feat(news): crawl-24x7 사이클 3 — B-4 시그널·C-4 공학 지속·CSB sitemap·CCPS Beacon (마이그 327)
- B-4 fetch_method='signal-only': 페이지 fetch 0 + summarize 스킵(검색 색인만, 맥미니 부하 0) + 본문 무절단(_entry_body — arXiv 초록 1.6K 보존). 다이제스트는 ai_summary NULL 제외 규칙으로 자연 배제. 레지스트리 오설정(page) 방어 가드. - 시드 9 소스 (전 URL 2026-06-11 live 검증): Bloomberg Markets/Technology(skip-video, 비디오 혼재 실측)·Economist Latest·Nikkei Asia(RDF — feedparser 네이티브, 분기 불요 fixture 박제)·ASME JPVT(site_1000037 실측 매핑)·arXiv 2종·IEEE Spectrum 2종(feed-full, 피드 description 이 전문 7.9~14K자 실측). - csb_collector: sitemap lastmod diff (weekly 월 06:50) — 워터마크(selector_override) + cap 40/회 점진 백필 + diff sanity 300 + 보고서 PDF(/assets/, recommendation 제외) → extract 파이프라인. 초기 일괄 = CLI --bulk. - api_standards_collector: 공지 목록 링크 파싱(실측 — 페이지 diff 아님, 상세 URL 10건/페이지) → 신규 상세만 ingest (monthly 5일 07:05). 초기 백필 = CLI --bulk. - ccps_collector: aiche.org 평문 403(UA 무관 실측) → playwright-fetcher 익명 컨텍스트 + referer 쿠키 승계 /download(base64) 신설로 월간 Beacon PDF (monthly 5일 07:20). 헤드리스 차단 시 CrawlBlocked → health 가시화 (르몽드 PARK 선례). - B-5 잔여: rdf/feed-reader-UA = 코드 분기 불요 실측 박제 (Economist 는 Archiver UA 200). table-strip/gn-redirect 는 해당 소스 미진입 — 백로그 유지. - 테스트 24건 신규 (fixture 9건 live 박제, economist/ieee 는 item trim) — 39 passed. - 마이그 327 단일 statement (PKM 트랙과 번호 경합 주의 — 327 본 트랙 선점). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
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<div class="pagination-container"><ul class="pagination"><li class="page-item active"><a>1</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=2&pageSize=10">2</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=3&pageSize=10">3</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=4&pageSize=10">4</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=5&pageSize=10">5</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=6&pageSize=10">6</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=7&pageSize=10">7</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=8&pageSize=10">8</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=9&pageSize=10">9</a></li><li class="page-item"><a href="/products-and-services/standards/important-standards-announcements?page=10&pageSize=10">10</a></li><li class="page-item disabled PagedList-ellipses"><a>…</a></li><li class="page-item PagedList-skipToNext"><a href="/products-and-services/standards/important-standards-announcements?page=2&pageSize=10" rel="next">»</a></li><li class="page-item PagedList-skipToLast"><a href="/products-and-services/standards/important-standards-announcements?page=12&pageSize=10">»»</a></li></ul></div>
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<h3><a href="/products-and-services/standards/important-standards-announcements/api-announces-47th-edition-of-foundational-line-pipe-standard-5l">API Announces 47th Edition of Foundational Line Pipe Standard</a></h3>
|
||||
|
||||
<p style="margin-bottom: 0in; line-height: normal;">WASHINGTON, June 2, 2026 — The American Petroleum Institute (API) today announced the publication of the <a href="https://nam04.safelinks.protection.outlook.com/?url=https%3A%2F%2Fwww.apiwebstore.org%2Fstandards%2F5L%3Futm_campaign%3D43765133-Standards-5L%26utm_source%3Dpr&data=05%7C02%7CMaxwellC%40api.org%7Cb4ba54a657b049ff58c808dec0a2bad7%7C2df2418fe75f46f0898d65f4eeecb14b%7C0%7C0%7C639160002307544852%7CUnknown%7CTWFpbGZsb3d8eyJFbXB0eU1hcGkiOnRydWUsIlYiOiIwLjAuMDAwMCIsIlAiOiJXaW4zMiIsIkFOIjoiTWFpbCIsIldUIjoyfQ%3D%3D%7C0%7C%7C%7C&sdata=qvuVR2PsJQx5M9oShqTN%2BBc%2FXQQiE9NdPwNm6MZ8VoE%3D&reserved=0" data-auth="NotApplicable" originalsrc="https://www.apiwebstore.org/standards/5L?utm_campaign=43765133-Standards-5L&utm_source=pr" data-outlook-id="e5cfad5e-c8c0-439b-9809-73c2341274b0" data-linkindex="0" title="Original URL: https://www.apiwebstore.org/standards/5L?utm_campaign=43765133-Standards-5L&utm_source=pr. Click or tap if you trust this link." style="color: blue; margin: 0px; padding: 0px; border: 0px; line-height: inherit;"><span style="text-decoration: underline;">47th edition of API Specification 5L (API Spec 5L), </span><em><span style="text-decoration: underline;">Line Pipe</span></em></a>. Originally published in 1924 as API’s first standard, API Spec 5L has supported the safe and reliable manufacture of steel line pipe used to transport oil and gas for more than a century. The 47th edition includes important new requirements across more than 15 topic areas, including high-frequency weld (HFW) pipe quality and pipe used in CO2 transport.</p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/api-announces-47th-edition-of-foundational-line-pipe-standard-5l">More »</a></p>
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<h3><a href="/products-and-services/standards/important-standards-announcements/api-spec-5l-47th">API Specification 5L, Line Pipe</a></h3>
|
||||
|
||||
<p>API has published the 47th edition of American Petroleum Institute <a href="https://www.apiwebstore.org/standards/5L">Specification 5L (API Spec 5L), Line Pipe</a>. Originally introduced as API’s first standard in 1924, the updated edition includes new requirements across more than 15 topic areas to support the safe and reliable manufacture of steel line pipe used in energy transportation, including CO2 transport. </p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/api-spec-5l-47th">More »</a></p>
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<h3><a href="/products-and-services/standards/important-standards-announcements/api-rp-1192">API Recommended Practice 1192 (RP 1192), Transportation of Carbon Dioxide by Pipeline</a></h3>
|
||||
|
||||
<p>API has published<span style="line-height: 18.4px;"><a href="https://www.apiwebstore.org/standards/1192?utm_campaign=32314451-rp-1192&utm_source=pub-announcement"> Recommended Practice 1192 (RP 1192), <em>Transportation of Carbon Dioxide by Pipeline<strong></strong></em></a><strong><em></em></strong></span><span style="line-height: 18.4px;">.This first edition standard provides performance requirements for the safe and reliable transport of carbon dioxide (CO<sub>2</sub>) by pipeline. It also addresses the design, construction, operation, and management of CO<sub>2</sub> </span><span style="line-height: 18.4px;">pipelines</span></p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/api-rp-1192">More »</a></p>
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|
||||
<h3><a href="/products-and-services/standards/important-standards-announcements/api-strengthens-requirements-for-steel-casing-and-tubing">API Strengthens Requirements for Steel Casing and Tubing</a></h3>
|
||||
|
||||
<p style="margin-bottom: 0in; line-height: normal;"><span>WASHINGTON, May 5, 2025 — The American Petroleum Institute (API) is pleased to announce the publication of an </span><a href="https://www.apiwebstore.org/standards/5CT?utm_campaign=Spec%205ct&utm_source=standardshighlights&utm_medium=PubNotice&__hstc=23321061.e37da81b94fb192a0eca1fd2b60ae651.1745351530524.1745592885893.1745605800922.3&__hssc=23321061.3.1745605800922&__hsfp=509228229">Addendum to the 11th edition of the API 5CT, Casing and Tubing</a><span>. The update strengthens the requirements for the manufacture of steel casing and tubing used in oil and gas drilling and production operations, enhancing safety, environmental protection and operational integrity.</span></p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/api-strengthens-requirements-for-steel-casing-and-tubing">More »</a></p>
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||||
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|
||||
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|
||||
<h3><a href="/products-and-services/standards/important-standards-announcements/addendum-1-rp-1183">Addendum to API RP 1183 for Improved Dent Screening</a></h3>
|
||||
|
||||
<p><span style="color: black;">In December 2020, American Petroleum Institute (API) published Recommended Practice 1183, First<sup> </sup>Edition (RP 1183), <em>Assessment and Management of Dents in Pipelines</em>. Since being issued, RP 1183 has been applied by pipeline operating companies and engineering consultants providing services to the energy pipeline industry to evaluate dents and deformations on pipeline systems and to support mitigation and repair decisions. RP 1183 includes various screening tools to estimate the remaining fatigue life of a dent in a pipeline. </span></p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/addendum-1-rp-1183">More »</a></p>
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||||
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|
||||
<h3><a href="/products-and-services/standards/important-standards-announcements/2025-international-standards-report-announcement">New API Report Highlights Broader Global Adoption of API Standards </a></h3>
|
||||
|
||||
<p>February 4, 2025 – The American Petroleum Institute (API) today released a new report, <em><a href="/-/media/APIWebsite/products-and-services/2025_Intnl-Usage_Report_web-final.pdf"><em>202</em><em>5 API Standards</em><em></em><em>International Usage Report</em></a></em>, detailing the growing international influence of API standards. The report identifies where governments and standards bodies reference API standards in policies, national and international standards, and technical regulations, highlighting the paramount role of API standards in advancing safety, sustainability, and efficiency across the global natural gas and oil industry.</p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/2025-international-standards-report-announcement">More »</a></p>
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<h3><a href="/products-and-services/standards/important-standards-announcements/20s-3d-printing-update">API Enhances 3D Printing Guidelines with Updated Additive Manufacturing Standard</a></h3>
|
||||
|
||||
<p style="margin-bottom: 0in; line-height: normal;"><span style="color: black;">The American Petroleum Institute (API) is pleased to announce the release of the second edition of API Standard 20S, <em>Qualification of Metal Additive Manufacturing Processes and Components Production Control for Use in the Petroleum and Natural Gas Industries</em>. This update strengthens the industry’s ability to effectively deploy additive manufacturing (AM), or 3D printing, improving efficiency, supply chain resilience and sustainability across oil and natural gas operations.</span></p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/20s-3d-printing-update">More »</a></p>
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<h3><a href="/products-and-services/standards/important-standards-announcements/addendum-1-to-api-rp-2001-10th-ed">Addendum 1 to API RP 2001, 10th Edition: Fire Protection in Refineries</a></h3>
|
||||
|
||||
<p>API has published Addendum 1 to API Recommended Practice 2001, 10th Edition - "Fire Protection in Refineries."<br />
|
||||
<br />
|
||||
This addendum strengthens existing fire safety measures by introducing new protocols for pre-planning and incident response in refineries.</p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/addendum-1-to-api-rp-2001-10th-ed">More »</a></p>
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||||
<h3><a href="/products-and-services/standards/important-standards-announcements/api-5ct-casing-and-tubing-addendum-1-11th">Addendum to the 11th edition of the API 5CT, Casing and Tubing</a></h3>
|
||||
|
||||
<p><span style="color: black;">The American Petroleum Institute (API) is pleased to announce the publication of an Addendum to the 11th edition of the API 5CT, <em>Casing and Tubing</em>. The update strengthens the requirements for the manufacture of steel casing and tubing used in oil and gas drilling and production operations, enhancing safety, environmental protection and operational integrity.</span></p>
|
||||
<p><a class="more" href="/products-and-services/standards/important-standards-announcements/api-5ct-casing-and-tubing-addendum-1-11th">More »</a></p>
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<h3><a href="/products-and-services/standards/important-standards-announcements/api-updates-fire-protection-standard-for-refineries">API Updates Fire Protection Standard for Refineries</a></h3>
|
||||
|
||||
<p>October 24, 2024 – The American Petroleum Institute (API) today announced the publication of Addendum 1 to API RP 2001, 10th Edition, “Fire Protection in Refineries.” This addendum strengthens existing fire safety measures by introducing new protocols for pre-planning and incident response in refineries.</p>
|
||||
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<p><a class="more" href="/products-and-services/standards/important-standards-announcements/api-updates-fire-protection-standard-for-refineries">More »</a></p>
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<title>Limits of Trap-assisted Photomultiplication Gain</title>
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<link>https://arxiv.org/abs/2606.10236</link>
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<description>arXiv:2606.10236v1 Announce Type: new
|
||||
Abstract: Photodiodes based on trap-assisted current injection can exhibit internal photomultiplication with apparent quantum efficiencies far exceeding unity, raising the question of whether such gain fundamentally enhances detector sensitivity. We employ a minimal analytical framework based on a single gain-active trapped state coupling photogenerated carriers to contact injection. The gain is intrinsically self-limiting: the injection process that amplifies the current simultaneously accelerates relaxation of the gain-enabling state, producing an inherently nonlinear, operating-point-dependent response. The form of this nonlinearity is not universal -- once the trap level is generalized to an energetic distribution and recombination is allowed to be bimolecular, the same mechanism yields superlinear, linear, or strongly sublinear responses. A single chord gain is therefore not a meaningful device descriptor, and chord-gain comparisons across the literature conflate devices in different regimes. Treating trap occupancy and injection as coupled stochastic processes, we show that internal gain introduces a strictly non-negative fluctuation penalty from the dissipative dynamics that sustain the gain state. A local, small-signal detectivity exhibits a finite optimum yet cannot exceed the intrinsic thermodynamic limit of the underlying unity-gain photodiode. Gain is thus equivalent to driven stochastic amplification: it can suppress downstream readout noise, but cannot reduce the fundamental noise floor set by the primary photodetection process.</description>
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|
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|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
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|
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<dc:creator>Ardalan Armin</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Filamentary Transport and Thermoelectric Effects in Mushroom Phase Change Memory Cells</title>
|
||||
<link>https://arxiv.org/abs/2606.10262</link>
|
||||
<description>arXiv:2606.10262v1 Announce Type: new
|
||||
Abstract: We performed a 2D finite-element electrothermal computational study of thermoelectric effects and filamentary electronic transport in Ge$_2$Sb$_2$Te$_5$ mushroom phase change memory cells during Reset and Set operations, accounting for spatial activation energy variations in amorphous Ge$_2$Sb$_2$Te$_5$ and phase-change dynamics. Reset operations with current going from the top electrode to the narrow 4 nm bottom electrode require $\sim$3x less energy and power, and $\sim$2x lower current to achieve the same Reset resistance, compared to the opposite polarity, due to thermoelectric effects. Filamentary conduction, electrical breakdown, thermal runaway, and local crystallization of amorphous Ge$_2$Sb$_2$Te$_5$ depend on current polarity and thermal boundary conditions, and determine the location, shape, and volume of the programming region, which may be significantly smaller than the semi-cylindrical mushroom region. The programming volume does not scale with contact dimensions larger than 10 nm. Larger contact areas introduce increased device-to-device and cycle-to-cycle variability due to filamentary conduction but are expected to lead to higher reliability and endurance.</description>
|
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|
||||
<category>physics.app-ph</category>
|
||||
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|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>new</arxiv:announce_type>
|
||||
<dc:rights>http://creativecommons.org/licenses/by/4.0/</dc:rights>
|
||||
<dc:creator>Md Samzid Bin Hafiz, Helena Silva, Ali Gokirmak</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Fast-Neutron Irradiation Effect in Heteroepitaxial $\beta$-Ga$_2$O$_3$ Schottky Diodes Fabricated on Low-Cost Sapphire Substrates</title>
|
||||
<link>https://arxiv.org/abs/2606.10269</link>
|
||||
<description>arXiv:2606.10269v1 Announce Type: new
|
||||
Abstract: In this work, we investigate the response of Ni/$\beta$-Ga$_2$O$_3$ Schottky barrier diodes fabricated on c-plane sapphire to fast-neutron irradiation up to a fluence of $1\times10^{15}$ n$\cdot$cm$^{-2}$. The LPCVD-grown heteroepitaxial structure consists of an unintentionally doped buffer, an n$^{+}$ contact layer, and an n-type drift layer, with mesa isolation realized by plasma-free Ga-assisted LPCVD etching. Prior to irradiation, the devices exhibit a turn-on voltage of 1.20 V, specific on-resistance of 8.43 m$\Omega\cdot$cm$^2$, ideality factor of 1.32, and Schottky barrier height of 1.29 eV. Following irradiation, the devices remain operational, although the forward current decreases, the turn-on voltage increases to 2.40 V, and the barrier height increases to 1.34 eV. Capacitance-voltage measurements reveal a $\sim$50% reduction in net donor concentration, corresponding to a carrier-removal rate of $\sim$105 cm$^{-1}$. Temperature-dependent measurements from 25 to 250 $^\circ$C confirm that thermionic emission remains the dominant transport mechanism and show significant suppression of reverse leakage current after irradiation. The breakdown voltage increases from 101 to 135 V, consistent with neutron-induced donor compensation. TCAD simulations show a more uniform electric-field distribution and reduced field crowding at the Schottky edge after irradiation. These results provide insight into neutron-induced donor compensation in heteroepitaxial $\beta$-Ga$_2$O$_3$ and demonstrate the ability of LPCVD-grown $\beta$-Ga$_2$O$_3$ Schottky diodes on sapphire to maintain stable operation under high-fluence neutron environments relevant to space and nuclear electronics.</description>
|
||||
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|
||||
<category>physics.app-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
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||||
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|
||||
<dc:creator>Saleh Ahmed Khan, Ahmed Ibreljic, Sourav Sarker, Stephen Margiotta, Anhar Bhuiyan</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Virtual-Array Operational Modal Analysis of Rolling Tires Using a Single Tire Cavity Accelerometer</title>
|
||||
<link>https://arxiv.org/abs/2606.10437</link>
|
||||
<description>arXiv:2606.10437v1 Announce Type: new
|
||||
Abstract: The dynamics of rolling tires significantly influence the low-frequency (0-500 Hz) structure-borne noise within vehicles. Accurately characterizing these dynamics under realistic operating conditions remains challenging. Current state-of-the-art methods, primarily relying on Laser Doppler Vibrometers (LDV), are complex to implement, time-intensive, and generally limited to smooth tires in laboratory environments due to issues with speckle formation on treaded surfaces. This study introduces an innovative strategy for Operational Modal Analysis (OMA) of a rolling tire using a single wireless Tire Cavity Accelerometer (TCA) together with two optical sensors. The methodology leverages the non-integer ratio between the tire and drum diameters in a test rig to create a virtual sensor array. By utilizing optical sensors to time-stamp the cleat impact (on the drum) precisely and the TCA position (on the tire), the vibration responses from multiple revolutions are clustered according to the TCA's circumferential position at the moment of impact. This effectively synthesizes responses from an array of virtual sensors distributed around the tire circumference using data from a single test run. The clustered signals are conditioned using order tracking to remove periodic components arising from contact patch deformation. Both Frequency Domain Decomposition (FDD) and Covariance-based Stochastic Subspace Identification (SSI-Cov) were employed for modal identification. The SSI-Cov method proved more robust, successfully identifying 11 circumferential modes up to 240 Hz. The proposed approach offers a significantly more efficient, cost-effective method for characterizing rolling tire dynamics, which is readily applicable to treaded tires and adaptable for on-road testing.</description>
|
||||
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|
||||
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||||
<category>physics.data-an</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>new</arxiv:announce_type>
|
||||
<dc:rights>http://arxiv.org/licenses/nonexclusive-distrib/1.0/</dc:rights>
|
||||
<dc:creator>Pradosh Pritam Dash, Ricardo Burdisso, Pablo A Tarazaga</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Finite-temperature Fe K-edge X-ray absorption simulations reveal local structural dynamics of an iron(II) photosensitizer in solution and the crystalline phase</title>
|
||||
<link>https://arxiv.org/abs/2606.10221</link>
|
||||
<description>arXiv:2606.10221v1 Announce Type: cross
|
||||
Abstract: Interpreting metal K-edge spectra of flexible photosensitizers requires a structural model that separates electronic signatures from thermal motion, solvent disorder, and crystal-packing effects. We combine Fe K-edge X-ray absorption measurements with second-generation Car--Parrinello ab initio molecular dynamics and all-electron Gaussian and augmented-plane-wave simulations for an iron(II) N-heterocyclic carbene photosensitizer in acetonitrile solution and in the crystalline phase. Ensemble-averaged spectra reproduce the main near-edge features in both environments and preserve the experimentally observed similarity of the first Fe coordination shell upon dissolution. Comparison with radial distributions extracted from extended fine-structure measurements validates the Fe--N and Fe--C coordination shells sampled by the trajectories, while element-resolved pair distributions explain why higher-shell experimental contrast is rapidly lost. The same dynamical ensembles reveal a broad out-of-plane distribution of the terpyridine nitrogen atom and a nearly octahedral distribution of the Fe-centered coordination planes. The results show that finite-temperature X-ray absorption simulations can provide a compact structural-dynamics picture of molecular transition metal photosensitizers by linking local spectra, solvent-phase ligand motion, and medium-range structural disorder within one trajectory-based description.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2606.10221v1</guid>
|
||||
<category>cond-mat.mtrl-sci</category>
|
||||
<category>physics.app-ph</category>
|
||||
<category>physics.chem-ph</category>
|
||||
<category>physics.comp-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>cross</arxiv:announce_type>
|
||||
<dc:rights>http://arxiv.org/licenses/nonexclusive-distrib/1.0/</dc:rights>
|
||||
<dc:creator>Patrick M\"uller, Lorena Fritsch, Matthias Bauer, Thomas D. K\"uhne</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Multi-channel Optical Vision Model</title>
|
||||
<link>https://arxiv.org/abs/2606.10253</link>
|
||||
<description>arXiv:2606.10253v1 Announce Type: cross
|
||||
Abstract: Spatial multiplexing is one of the natural strengths of optics, yet in optical neural networks, it is often used mainly as parallel throughput. Here, we show that spatial multiplexing in an optical neural network can be used not only to process multiple inputs in parallel, but also to define a trainable representational coordinate of the model. In three implemented scenarios, parallel-input processing, class-code readout and channel-mixed feature interaction, spatial channels act as independent learners, structured code dimensions, and interacting feature groups. The programmable free-space optical processor is trained through an online physical-forward/surrogate-backward scheme, where measured optical outputs define the forward pass while a differentiable surrogate estimates gradients and is continually fine-tuned during training from newly acquired optical data. We demonstrate these channel roles in image classification and regression tasks using multi-layer architectures with more than one million trainable optical phase parameters. We further implement a hybrid optical-electronic vision-language model, in which the optical neural network provides visual tokens to a digital transformer decoder for controlled image-captioning tasks. These results establish spatially multiplexed optical channels as a programmable feature and readout space for hybrid optical vision models.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2606.10253v1</guid>
|
||||
<category>physics.optics</category>
|
||||
<category>physics.app-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>cross</arxiv:announce_type>
|
||||
<dc:rights>http://arxiv.org/licenses/nonexclusive-distrib/1.0/</dc:rights>
|
||||
<dc:creator>Ali Momeni, Guillaume Noetinger, Tim Tuuva, Romain Fleury</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Spontaneous translation of charged droplets during evaporation on dry surfaces</title>
|
||||
<link>https://arxiv.org/abs/2606.10755</link>
|
||||
<description>arXiv:2606.10755v1 Announce Type: cross
|
||||
Abstract: Evaporating sessile droplets are usually treated as capillary objects, but droplets generated by routine handling can carry tens to hundreds of picocoulombs of electric charge. Here we combine Faraday-cup charge measurements with optical imaging to determine how such charge evolves as water droplets evaporate on dry polymer substrates. A zero-time protocol shows that a reproducible initial charge is preserved on poly(methylpentene) (PMP), whereas PDMS, SOCAL-coated surfaces, and polystyrene either exchange, dissipate, or inject charge on contact. On PMP, ensemble-resolved measurements reveal two regimes: the charge remains nearly constant during early evaporation and then decreases abruptly once the droplet reaches a small-volume state. This charge collapse coincides with spontaneous lateral translation rather than jetting or breakup. A Rayleigh-normalized analysis, including a spherical-cap stress correction and measured contact-angle retention scale, shows that motion occurs only after evaporation drives the droplet into a high electro-pinning state. High-speed imaging and kinematic analysis support a picture in which the subsequent motion is governed by repeated contact-line depinning and re-pinning: the total distance traveled is strongly affected by dry-surface pinning, whereas the peak translational velocity serves as a more robust indicator of the discharge strength. These results identify a dry-substrate mode of evaporation-driven electrostatic relaxation, distinct from Coulomb fission on lubricated surfaces, in which substrate electrostatic passivity enables charge retention, droplet geometry selects the instability onset, and whole-droplet translation provides the charge-release pathway.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2606.10755v1</guid>
|
||||
<category>cond-mat.soft</category>
|
||||
<category>physics.app-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>cross</arxiv:announce_type>
|
||||
<dc:rights>http://creativecommons.org/licenses/by-nc-nd/4.0/</dc:rights>
|
||||
<dc:creator>Riming Xu, Yanbo Li, Jiawen Zhang, Jin Wang, Yikai Li</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Programmable Integrated Magnonic Meshes</title>
|
||||
<link>https://arxiv.org/abs/2605.00290</link>
|
||||
<description>arXiv:2605.00290v2 Announce Type: replace
|
||||
Abstract: Integrated circuits are a cornerstone of modern information technology, and analog wave-based architectures could enable fast and efficient processing beyond conventional charge electronics. In magnonics, spin waves provide a highly tunable, compact and energy-efficient medium for on-chip microwave signal transport and processing. However, progress has been limited to isolated elements or short devices, severely limiting the overall functional complexity and scalability. Here we realize the key elements of universal magnonic circuitry, using a single-step direct laser writing process in yttrium iron garnet, and monolithically cascade them in multi-stage programmable devices and networks. Using magneto-optical Kerr effect microscopy, we show efficient spin-wave propagation and preserved phase coherence in waveguide structures for hundreds of wavelengths. In coupled waveguides, we observe complete and periodic power transfer over several coupling lengths, and in phase shifters we achieve arbitrary, tunable phase delays. By cascading these elements, we realize programmable splitters, frequency demultiplexers, and phase-controlled 2x2 routers, where output power and relative phase can be programmed on demand via external fields. Finally, we realize programmable magnonic interferometric meshes for on-chip radio-frequency signal routing, with up to six magnonic inputs and outputs and seven cascaded stages, without the need for intermediate amplification. These direct-write cascaded networks bridge a long-standing gap in magnonic scalability, offering a viable pathway toward integrated, large-scale architectures for both classical and quantum processing.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2605.00290v2</guid>
|
||||
<category>physics.app-ph</category>
|
||||
<category>cond-mat.mtrl-sci</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>replace</arxiv:announce_type>
|
||||
<dc:rights>http://creativecommons.org/licenses/by/4.0/</dc:rights>
|
||||
<dc:creator>Piero Florio, Matteo Vitali, Valerio Levati, Rasheed M. Ishola, Luca Ciaccarini Mavilla, Nora Lecis, Carsten Dubs, Riccardo Bertacco, Marco Madami, Silvia Tacchi, Daniela Petti, Edoardo Albisetti</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Interpretable deep convolutional model for nonlinear multivariate time series in complex systems</title>
|
||||
<link>https://arxiv.org/abs/2501.04339</link>
|
||||
<description>arXiv:2501.04339v2 Announce Type: replace-cross
|
||||
Abstract: We introduce the Deep Convolutional Interpreter for Time Series (DCIts), a deep-learning architecture for nonlinear multivariate time series that provides sample-specific, locally interpretable descriptions of the underlying interaction structure. Unlike standard black-box forecasters, DCIts learns a time- and lag-dependent transition tensor explicitly factorized into two components: a Focuser, which selects relevant source series and time lags via a sparse masking mechanism, and a Modeler, which assigns signed coefficients to these selected interactions. This decomposition yields a local lag-adjacency structure and signed source-lag contributions for every forecast instance, enabling direct inspection of effective connectivity; when higher-order branches are activated, the same framework yields order-resolved elementwise polynomial contributions. Architecturally, DCIts uses a diverse bank of convolutional filters to capture temporal and cross-variable dependencies, which are mapped through a bottleneck network to the transition tensor. On controlled benchmark datasets with a known interaction structure, we demonstrate that DCIts achieves competitive forecasting error relative to a strong interpretable baseline while recovering stable, signed, lag-resolved interaction patterns. The framework thus prioritizes intrinsic interpretability, using forecasting accuracy as a faithfulness constraint rather than the sole objective.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2501.04339v2</guid>
|
||||
<category>stat.ML</category>
|
||||
<category>cs.LG</category>
|
||||
<category>physics.app-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>replace-cross</arxiv:announce_type>
|
||||
<dc:rights>http://arxiv.org/licenses/nonexclusive-distrib/1.0/</dc:rights>
|
||||
<arxiv:DOI>10.1063/5.0325209</arxiv:DOI>
|
||||
<arxiv:journal_reference>Chaos 36, 063116 (2026)</arxiv:journal_reference>
|
||||
<dc:creator>Domjan Baric, Davor Horvatic</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Probing laser-driven surface and subsurface dynamics via grazing-incidence XFEL scattering and diffraction</title>
|
||||
<link>https://arxiv.org/abs/2509.12015</link>
|
||||
<description>arXiv:2509.12015v2 Announce Type: replace-cross
|
||||
Abstract: We demonstrate a grazing-incidence x-ray platform that simultaneously records time-resolved grazing-incidence small-angle x-ray scattering (GISAXS) and grazing-incidence x-ray diffraction (GID) from a femtosecond laser-irradiated gold film above the melting threshold, with picosecond resolution at an x-ray free-electron laser (XFEL). By tuning the x-ray incidence angle, the probe depth is set to tens of nanometers, enabling depth-selective sensitivity to near-surface dynamics. GISAXS resolves ultrafast changes in surface nanomorphology (correlation length, roughness), while GID quantifies subsurface lattice compression, grain orientation, melting, and recrystallization. The approach overcomes photon-flux limitations of synchrotron grazing-incidence geometries and provides stringent, time-resolved benchmarks for complex theoretical models of ultrafast laser-matter interaction and warm dense matter. Looking ahead, the same depth-selective methodology is well suited to inertial confinement fusion (ICF): it can visualize buried-interface perturbations and interfacial thermal resistance on micron to sub-micron scales that affect instability seeding and burn propagation.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2509.12015v2</guid>
|
||||
<category>physics.optics</category>
|
||||
<category>physics.app-ph</category>
|
||||
<category>physics.ins-det</category>
|
||||
<category>physics.plasm-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>replace-cross</arxiv:announce_type>
|
||||
<dc:rights>http://arxiv.org/licenses/nonexclusive-distrib/1.0/</dc:rights>
|
||||
<arxiv:DOI>10.1107/S2052252526001727</arxiv:DOI>
|
||||
<arxiv:journal_reference>IUCrJ Vol.13, Pages 249-259 (2026)</arxiv:journal_reference>
|
||||
<dc:creator>Lisa Randolph, \"Ozg\"ul \"Ozt\"urk, Dmitriy Ksenzov, Lingen Huang, Thomas Kluge, S. V. Rahul, Victorien Bouffetier, Carsten Baehtz, Mohammadreza Banjafar, Erik Brambrink, Fabien Brieuc, Byoung Ick Cho, Sebastian G\"ode, Tobias Held, Hauke H\"oppner, Gerhard Jakob, Mathias Kl\"aui, Zuzana Kon\^opkov\'a, Changhoo Lee, Gyusang Lee, Mikako Makita, Mikhail Mishchenko, Mianzhen Mo, Pascal D. Ndione, Michael Paulus, Alexander Pelka, Franziska Paschke-Bruehl, Thomas R. Preston, Baerbel Rethfeld, Christian R\"odel, Michal \v{S}m\'id, Ling Wang, Sebastian T. Weber, Lennart Wollenweber, Jan-Patrick Schwinkendorf, Christian Gutt, Motoaki Nakatsutsumi</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Real-space imaging reveals symmetry-selected nonlinear energy routing in a mechanical resonator</title>
|
||||
<link>https://arxiv.org/abs/2605.01469</link>
|
||||
<description>arXiv:2605.01469v2 Announce Type: replace-cross
|
||||
Abstract: Nonlinear energy exchange between vibrational modes underlies phenomena ranging from internal resonance and wave mixing to frequency-comb generation, yet modal interactions are typically inferred from spectra rather than directly observed in space. Here, we image nonlinear modal energy routing in a nearly mirror-symmetric microelectromechanical resonator using phase-locked multi-harmonic stroboscopic interferometry. By reconstructing the spatial eigenmode content of individual harmonics, we show that harmonics generated by a driven mode can be carried by distinct spatial eigenmodes, directly resolving spatial pathways of nonlinear energy transfer. Our measurements further reveal that this modal routing persists away from integer frequency matching: in the off-resonant regime, generated harmonic components are dominated by eigenmodes sharing the driven mode's mirror parity, whereas spectrally closer opposite-parity modes remain strongly suppressed. A nonlinear modal framework based on geometric nonlinearity shows that the relevant cubic coupling coefficients factorize into symmetry-dependent modal-overlap integrals, identifying mirror parity as the selection rule for nonlinear modal interaction. This work identifies spatial symmetry as a design parameter for nonlinear energy routing and provides a route to symmetry-engineered control of energy flow in multimode nonlinear wave systems.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2605.01469v2</guid>
|
||||
<category>physics.optics</category>
|
||||
<category>physics.app-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>replace-cross</arxiv:announce_type>
|
||||
<dc:rights>http://creativecommons.org/licenses/by-nc-nd/4.0/</dc:rights>
|
||||
<dc:creator>Ya Zhang, Yuko Terasawa, Qian Liu, Shumpei Takenaka, Hua Li, Yutao Xu, Xueyong Wei, Kazuhiko Hirakawa</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Designing single-layer PDMS devices for micron to millimeter-scale deformations</title>
|
||||
<link>https://arxiv.org/abs/2605.17402</link>
|
||||
<description>arXiv:2605.17402v2 Announce Type: replace-cross
|
||||
Abstract: The elasticity of PDMS has played a central role in advancing important microfluidic technologies, ranging from early valves to sophisticated organ-on-a-chip systems. However, most deformable microfluidic devices are based on geometries that require complex multi-layer PDMS architectures and include thin membranes, leading to difficult microfabrication and poor stability. Recently, Jain, Belkadi et al. (Biofabrication 16.3 (2024): 035010) introduced a single-layer PDMS device in which a wide and long microfluidic channel was deformed by pressurizing two adjacent air chambers. While they demonstrated how the channel ceiling deformation can be leveraged to compress biological materials, it remains unknown how the device geometry influences this deformation. Here, a systematic numerical study is performed on 14,336 variants of this device, through which the height of the PDMS layer is identified as the main feature that determines the ceiling deformation. Three modes of channel deformation are identified as the geometry are varied: a U shape with a central minimum, a W shape with two minima and a central maximum, or an inverse U shape with an upward-bulging single maximum. The numerical results are validated in experiments that reproduce the three modes for the predicted geometries and demonstrate vertical ceiling deformations ranging from a few microns to the millimeter scale. The generality of this approach is demonstrated for two example applications: A fully closing single-layer microfluidic valve and an optical lens of controllable anisotropic magnification. This work leverages the rapid prototyping enabled by 3D printing or micro-milling to open new perspectives in microfluidic actuation.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2605.17402v2</guid>
|
||||
<category>physics.flu-dyn</category>
|
||||
<category>physics.app-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>replace-cross</arxiv:announce_type>
|
||||
<dc:rights>http://creativecommons.org/licenses/by/4.0/</dc:rights>
|
||||
<dc:creator>Leon V. Gebhard, Alexandre S. Avaro, Gabriel Amselem, Charles N. Baroud</dc:creator>
|
||||
</item>
|
||||
<item>
|
||||
<title>Metasurfaces for neutral-atom trapping</title>
|
||||
<link>https://arxiv.org/abs/2605.30498</link>
|
||||
<description>arXiv:2605.30498v2 Announce Type: replace-cross
|
||||
Abstract: Trapped neutral atoms are one of the leading platforms for quantum information technologies, in particular for quantum computing, but scaling them to array sizes needed for utility-scale quantum computing is a major engineering challenge. Here we review optical metasurfaces as an enabling technology that provides fine control over the phase, amplitude, and polarization of light, with pixel counts far exceeding what is available with spatial light modulators (SLMs) and other active devices. The large pixel counts have recently led to demonstrations of arrays of optical tweezers with hundreds of thousands of sites and arrays of optical bottle-beams with complex three-dimensional trapping profiles. The flexibility and scalability of optical metasurfaces provides a route towards miniaturized, integrated, and highly scalable atomic experiments and instruments.</description>
|
||||
<guid isPermaLink="false">oai:arXiv.org:2605.30498v2</guid>
|
||||
<category>physics.optics</category>
|
||||
<category>physics.app-ph</category>
|
||||
<category>physics.atom-ph</category>
|
||||
<category>quant-ph</category>
|
||||
<pubDate>Wed, 10 Jun 2026 00:00:00 -0400</pubDate>
|
||||
<arxiv:announce_type>replace-cross</arxiv:announce_type>
|
||||
<dc:rights>http://arxiv.org/licenses/nonexclusive-distrib/1.0/</dc:rights>
|
||||
<dc:creator>Chengyu Fang, Minjeong Kim, Mark Saffman, Jennifer T. Choy, Mikhail Kats</dc:creator>
|
||||
</item>
|
||||
</channel>
|
||||
</rss>
|
||||
+37
@@ -0,0 +1,37 @@
|
||||
<?xml version="1.0"?>
|
||||
<rss version="2.0" xmlns:prism="http://purl.org/rss/1.0/modules/prism/">
|
||||
<channel>
|
||||
<title>Journal of Pressure Vessel Technology Open Issues</title>
|
||||
<link>https://asmedigitalcollection.asme.org/pressurevesseltech</link>
|
||||
<description>
|
||||
</description>
|
||||
<language>en-us</language>
|
||||
<pubDate>Mon, 11 May 2026 00:00:00 GMT</pubDate>
|
||||
<lastBuildDate>Tue, 12 May 2026 00:00:37 GMT</lastBuildDate>
|
||||
<generator>Silverchair</generator>
|
||||
<managingEditor>ASMEDigitalCollection@asme.org</managingEditor>
|
||||
<webMaster>ASMEDigitalCollection@asme.org</webMaster>
|
||||
<item>
|
||||
<title>Research on Low-Temperature Mechanical Properties and Fracture Behavior of 09MnNiDR Steel Based on Small Punch Test</title>
|
||||
<link>https://asmedigitalcollection.asme.org/pressurevesseltech/article/148/5/051504/1232699/Research-on-Low-Temperature-Mechanical-Properties</link>
|
||||
<pubDate>Mon, 11 May 2026 00:00:00 GMT</pubDate>
|
||||
<description><span class="paragraphSection"><div class="boxTitle">Abstract</div>To develop a microdamage evaluation method applicable to in-service equipment under low-temperature conditions, this study systematically investigates the mechanical properties and fracture behavior of 09MnNiDR cryogenic steel over a broad temperature range from room temperature to −196 °C. The small punch test (SPT) technique is employed, supplemented by electron backscatter diffraction (EBSD) and scanning electron microscopy (SEM) for micromechanism analysis. Results indicate that under cryogenic conditions, dislocation slip is suppressed, leading to a more uniform distribution of plastic strain. Concurrently, the deformation process at low temperatures refines the grains within the plastic zone through mechanisms such as mechanical subdivision. As temperature decreases, the material strength increases linearly, exhibiting a significant cryogenic strengthening effect. The fracture mode transitions from ductile to brittle, with a ductile-to-brittle transition zone identified near −150 °C. An empirical formula based on SPT deformation energy is proposed to predict yield and true tensile strength, with prediction errors below 6%. By introducing a normalized energy parameter, an empirical correlation model is established between the SPT ductile-to-brittle transition temperature (DBTT) and the standard Charpy impact transition temperature. This study presents a viable methodology for safety assessment of in-service cryogenic pressure vessels through minimally invasive testing and performance prediction.</span></description>
|
||||
<prism:volume xmlns:prism="prism">148</prism:volume>
|
||||
<prism:number xmlns:prism="prism">5</prism:number>
|
||||
<prism:startingPage xmlns:prism="prism">051504</prism:startingPage>
|
||||
<prism:doi xmlns:prism="prism">10.1115/1.4071740</prism:doi>
|
||||
<guid>https://asmedigitalcollection.asme.org/pressurevesseltech/article/148/5/051504/1232699/Research-on-Low-Temperature-Mechanical-Properties</guid>
|
||||
</item>
|
||||
<item>
|
||||
<title>Improved Oxidation, Carburization Resistance and Creep Strength of Ethylene Pyrolysis Furnace Tubes at 1100 °C Through Aluminum and Tungsten Alloying</title>
|
||||
<link>https://asmedigitalcollection.asme.org/pressurevesseltech/article/148/4/041701/1232556/Improved-Oxidation-Carburization-Resistance-and</link>
|
||||
<pubDate>Mon, 11 May 2026 00:00:00 GMT</pubDate>
|
||||
<description><span class="paragraphSection"><div class="boxTitle">Abstract</div>The oxidation resistance, carburization resistance, and mechanical properties of ethylene pyrolysis furnace tube alloys modified by Al/Al-W alloying were comparatively investigated with conventional alloys using various microstructural characterization techniques and mechanical property testing methods. The Al-alloyed 29Cr44Ni4AlNb+microalloy (MA) exhibits superior oxidation and carburization resistance compared to conventional 25Cr35NiNb+MA and 35Cr45NiNb+MA alloys; however, its creep rupture life was significantly reduced. Further addition of W enhanced the solid solution strengthening effect, thereby improving high-temperature tensile properties and mitigating the detrimental impact of Al on creep performance. The creep rupture life of the Al/W-modified 27Cr44Ni5W3Al+MA alloy reached levels comparable to those of conventional alloys while retaining the beneficial effects of Al in improving oxidation and carburization resistance. Through alloying strategies, this study successfully achieved a balance between corrosion resistance and mechanical properties in ethylene pyrolysis furnace tube alloys, enabling them to withstand their harsh service conditions effectively.</span></description>
|
||||
<prism:volume xmlns:prism="prism">148</prism:volume>
|
||||
<prism:number xmlns:prism="prism">4</prism:number>
|
||||
<prism:startingPage xmlns:prism="prism">041701</prism:startingPage>
|
||||
<prism:doi xmlns:prism="prism">10.1115/1.4071682</prism:doi>
|
||||
<guid>https://asmedigitalcollection.asme.org/pressurevesseltech/article/148/4/041701/1232556/Improved-Oxidation-Carburization-Resistance-and</guid>
|
||||
</item>
|
||||
</channel>
|
||||
</rss>
|
||||
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|
||||
<html><head><title>Givaudan Sense Colour Explosion</title></head><body>
|
||||
<!-- 실측 발췌 (2026-06-11, csb.gov givaudan-sense-colour-explosion-) — PDF 앵커 원형 보존:
|
||||
보고서/부록/업데이트 + recommendation 상태요약 혼재 페이지 -->
|
||||
<a href="/assets/1/20/Appendix_C_Reactivity_Testing_Results_Publication.pdf?17347" id="CT_InvestigationDetails_8_rptDocumentsCategory_ctl06_rptDocuments_ctl01_lnkDocument" class="bold" target="_blank">Appendix C – Reactivity Testing Results and Analysis</a>
|
||||
<a href="/assets/1/20/Givaudan_Investigation_Report_Publication.pdf?17346" id="CT_InvestigationDetails_8_rptDocumentsCategory_ctl29_rptDocuments_ctl01_lnkDocument" class="bold" target="_blank">Fatal Runaway Reaction and Explosion at Givaudan Sense Colour / D.D. Williamson</a>
|
||||
<a href="/assets/1/6/Givaudan_Investigation_Update_-_final.pdf?17132" id="CT_InvestigationDetails_8_rptDocumentsCategory_ctl35_rptDocuments_ctl01_lnkDocument" class="bold" target="_blank">Givaudan Explosion Investigation Update</a>
|
||||
<a target="_blank" href="/assets/recommendation/Status_Change_Summary_CRA_(Givaudan_R12).pdf" > Recommendation Status Change Summary</a>
|
||||
<a target="_blank" href="/assets/recommendation/Status_Change_Summary_Givaudan_Corp_(Givaudan_R8).pdf" > Recommendation Status Change Summary</a>
|
||||
<a target="_blank" href="/assets/recommendation/Status_Change_Summary_Givaudan_(Givaudan_R1).pdf" > Recommendation Status Change Summary</a>
|
||||
<a target="_blank" href="/assets/recommendation/Status_Change_Summary_Givaudan_(Givaudan_R2).pdf" > Recommendation Status Change Summary</a>
|
||||
</body></html>
|
||||
+1
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|
||||
<link>https://asia.nikkei.com/business/companies/swire-dangles-cathay-shares-in-600m-convertible-bond-issuance</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/materials/shin-etsu-to-set-up-rare-earth-smelter-in-japan-to-ease-reliance-on-china">
|
||||
<title><![CDATA[Shin-Etsu to set up rare-earth smelter in Japan to ease reliance on China]]></title>
|
||||
<link>https://asia.nikkei.com/business/materials/shin-etsu-to-set-up-rare-earth-smelter-in-japan-to-ease-reliance-on-china</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/editor-s-picks/interview/setting-sea-border-with-japan-vital-philippine-foreign-secretary">
|
||||
<title><![CDATA[Setting sea border with Japan vital: Philippine foreign secretary]]></title>
|
||||
<link>https://asia.nikkei.com/editor-s-picks/interview/setting-sea-border-with-japan-vital-philippine-foreign-secretary</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/markets/strong-dollar-rally-weighs-heavier-on-struggling-asian-countries">
|
||||
<title><![CDATA[Strong dollar rally weighs heavier on struggling Asian countries]]></title>
|
||||
<link>https://asia.nikkei.com/business/markets/strong-dollar-rally-weighs-heavier-on-struggling-asian-countries</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/fisheries/thailand-s-shrimp-industry-hit-by-malaysia-s-import-ban">
|
||||
<title><![CDATA[Thailand's shrimp industry hit by Malaysia's import ban]]></title>
|
||||
<link>https://asia.nikkei.com/business/fisheries/thailand-s-shrimp-industry-hit-by-malaysia-s-import-ban</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/technology/applied-materials-opens-500m-manufacturing-campus-in-singapore">
|
||||
<title><![CDATA[Applied Materials opens $500m manufacturing campus in Singapore]]></title>
|
||||
<link>https://asia.nikkei.com/business/technology/applied-materials-opens-500m-manufacturing-campus-in-singapore</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/spotlight/the-future-of-asia/future-of-asia-2026/malaysia-s-anwar-warns-against-global-powers-weaponizing-trade">
|
||||
<title><![CDATA[Malaysia's Anwar warns against global powers weaponizing trade]]></title>
|
||||
<link>https://asia.nikkei.com/spotlight/the-future-of-asia/future-of-asia-2026/malaysia-s-anwar-warns-against-global-powers-weaponizing-trade</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/energy/apple-and-nvidia-supplier-foxconn-invests-in-vietnam-solar-wind-power">
|
||||
<title><![CDATA[Apple and Nvidia supplier Foxconn invests in Vietnam solar, wind power]]></title>
|
||||
<link>https://asia.nikkei.com/business/energy/apple-and-nvidia-supplier-foxconn-invests-in-vietnam-solar-wind-power</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/spotlight/sports/world-cup-tests-asia-s-appetite-for-costly-broadcast-rights">
|
||||
<title><![CDATA[World Cup tests Asia's appetite for costly broadcast rights]]></title>
|
||||
<link>https://asia.nikkei.com/spotlight/sports/world-cup-tests-asia-s-appetite-for-costly-broadcast-rights</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/finance/brookfield-bets-on-its-japan-business-to-top-hong-kong-and-singapore">
|
||||
<title><![CDATA[Brookfield bets on its Japan business to top Hong Kong and Singapore]]></title>
|
||||
<link>https://asia.nikkei.com/business/finance/brookfield-bets-on-its-japan-business-to-top-hong-kong-and-singapore</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/technology/tencent-raises-4.6bn-in-dual-dollar-yuan-bond-issuances">
|
||||
<title><![CDATA[Tencent raises $4.6bn in dual dollar, yuan bond issuances]]></title>
|
||||
<link>https://asia.nikkei.com/business/technology/tencent-raises-4.6bn-in-dual-dollar-yuan-bond-issuances</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/automobiles/electric-vehicles/ferrari-luce-ev-highlights-european-struggle-to-lure-back-china-s-superrich">
|
||||
<title><![CDATA[Ferrari Luce EV highlights European struggle to lure back China's superrich]]></title>
|
||||
<link>https://asia.nikkei.com/business/automobiles/electric-vehicles/ferrari-luce-ev-highlights-european-struggle-to-lure-back-china-s-superrich</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/markets/commodities/indian-families-scale-back-on-gold-for-weddings-as-prices-hover-near-highs">
|
||||
<title><![CDATA[Indian families scale back on gold for weddings as prices hover near highs]]></title>
|
||||
<link>https://asia.nikkei.com/business/markets/commodities/indian-families-scale-back-on-gold-for-weddings-as-prices-hover-near-highs</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/politics/defense/japan-s-new-defense-document-to-name-china-the-biggest-concern">
|
||||
<title><![CDATA[Japan's new defense document to name China the biggest concern]]></title>
|
||||
<link>https://asia.nikkei.com/politics/defense/japan-s-new-defense-document-to-name-china-the-biggest-concern</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/food-beverage/japan-to-bolster-ip-protections-for-prized-new-fruit-vegetable-varieties">
|
||||
<title><![CDATA[Japan to bolster IP protections for prized new fruit, vegetable varieties]]></title>
|
||||
<link>https://asia.nikkei.com/business/food-beverage/japan-to-bolster-ip-protections-for-prized-new-fruit-vegetable-varieties</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/spotlight/environment/climate-change/japan-s-jgc-bets-on-carbon-feeding-bacteria-to-create-bioplastics">
|
||||
<title><![CDATA[Japan's JGC bets on carbon-feeding bacteria to create bioplastics]]></title>
|
||||
<link>https://asia.nikkei.com/spotlight/environment/climate-change/japan-s-jgc-bets-on-carbon-feeding-bacteria-to-create-bioplastics</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/travel-leisure/rural-japan-hopes-to-charm-domestic-travelers-priced-out-of-overseas-trips">
|
||||
<title><![CDATA[Rural Japan hopes to charm domestic travelers priced out of overseas trips]]></title>
|
||||
<link>https://asia.nikkei.com/business/travel-leisure/rural-japan-hopes-to-charm-domestic-travelers-priced-out-of-overseas-trips</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/energy/gm-partners-with-peak-energy-for-sodium-ion-battery-storage">
|
||||
<title><![CDATA[GM partners with Peak Energy for sodium-ion battery storage]]></title>
|
||||
<link>https://asia.nikkei.com/business/energy/gm-partners-with-peak-energy-for-sodium-ion-battery-storage</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/technology/tech-asia/japan-seeks-bigger-role-in-asia-s-subsea-cables-as-ai-rewires-demand">
|
||||
<title><![CDATA[Japan seeks bigger role in Asia's subsea cables as AI rewires demand]]></title>
|
||||
<link>https://asia.nikkei.com/business/technology/tech-asia/japan-seeks-bigger-role-in-asia-s-subsea-cables-as-ai-rewires-demand</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/spotlight/comment/why-japan-s-takaichi-has-stepped-back-from-boj-rate-hike-debate">
|
||||
<title><![CDATA[Why Japan's Takaichi has stepped back from BOJ rate hike debate]]></title>
|
||||
<link>https://asia.nikkei.com/spotlight/comment/why-japan-s-takaichi-has-stepped-back-from-boj-rate-hike-debate</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/transportation/japan-flying-car-startup-skydrive-aims-for-the-skies-in-2028">
|
||||
<title><![CDATA[Japan flying car startup SkyDrive aims for the skies in 2028]]></title>
|
||||
<link>https://asia.nikkei.com/business/transportation/japan-flying-car-startup-skydrive-aims-for-the-skies-in-2028</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/technology/hanwha-qcells-kicks-off-first-fully-onshore-us-solar-supply-chain">
|
||||
<title><![CDATA[Hanwha Qcells kicks off first fully onshore US solar supply chain]]></title>
|
||||
<link>https://asia.nikkei.com/business/technology/hanwha-qcells-kicks-off-first-fully-onshore-us-solar-supply-chain</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/energy/japan-s-mitsubishi-hc-canada-s-brookfield-to-buy-european-wind-solar-farms-in-ai-play2">
|
||||
<title><![CDATA[Japan's Mitsubishi HC, Canada's Brookfield to buy European wind, solar farms in AI play]]></title>
|
||||
<link>https://asia.nikkei.com/business/energy/japan-s-mitsubishi-hc-canada-s-brookfield-to-buy-european-wind-solar-farms-in-ai-play2</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/technology/g7-plans-first-joint-statement-for-protecting-minors-on-social-media">
|
||||
<title><![CDATA[G7 plans first joint statement for protecting minors on social media]]></title>
|
||||
<link>https://asia.nikkei.com/business/technology/g7-plans-first-joint-statement-for-protecting-minors-on-social-media</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/automobiles/toyota-backs-japan-self-driving-startup-tier-iv-in-development-push">
|
||||
<title><![CDATA[Toyota backs Japan self-driving startup Tier IV in development push]]></title>
|
||||
<link>https://asia.nikkei.com/business/automobiles/toyota-backs-japan-self-driving-startup-tier-iv-in-development-push</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/softbank/jpmorgan-chase-emerges-as-softbank-group-s-top-lender-surpassing-mizuho">
|
||||
<title><![CDATA[JPMorgan Chase emerges as SoftBank Group's top lender, surpassing Mizuho]]></title>
|
||||
<link>https://asia.nikkei.com/business/softbank/jpmorgan-chase-emerges-as-softbank-group-s-top-lender-surpassing-mizuho</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/energy/malaysia-to-promise-japan-maximum-possible-lng-naphtha">
|
||||
<title><![CDATA[Malaysia to promise Japan maximum possible LNG, naphtha]]></title>
|
||||
<link>https://asia.nikkei.com/business/energy/malaysia-to-promise-japan-maximum-possible-lng-naphtha</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/photos/in-focus-mindanao-reels-from-another-deadly-earthquake">
|
||||
<title><![CDATA[In Focus: Mindanao reels from another deadly earthquake]]></title>
|
||||
<link>https://asia.nikkei.com/photos/in-focus-mindanao-reels-from-another-deadly-earthquake</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/politics/international-relations/us-china-tensions/pentagon-blacklists-alibaba-byd-and-baidu-over-alleged-military-ties">
|
||||
<title><![CDATA[Pentagon blacklists Alibaba, BYD and Baidu over alleged military ties]]></title>
|
||||
<link>https://asia.nikkei.com/politics/international-relations/us-china-tensions/pentagon-blacklists-alibaba-byd-and-baidu-over-alleged-military-ties</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/economy/bank-of-japan/bank-of-japan-set-to-hike-key-interest-rate-to-1">
|
||||
<title><![CDATA[Bank of Japan set to hike key interest rate to 1%]]></title>
|
||||
<link>https://asia.nikkei.com/economy/bank-of-japan/bank-of-japan-set-to-hike-key-interest-rate-to-1</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/spotlight/the-future-of-asia/future-of-asia-2026/semiconductor-advances-a-must-for-data-centers-says-tokyo-electron-boss">
|
||||
<title><![CDATA[Semiconductor advances a 'must' for data centers, says Tokyo Electron boss]]></title>
|
||||
<link>https://asia.nikkei.com/spotlight/the-future-of-asia/future-of-asia-2026/semiconductor-advances-a-must-for-data-centers-says-tokyo-electron-boss</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/politics/international-relations/xi-shores-up-china-s-sway-in-pyongyang-wary-of-north-korea-russia-ties">
|
||||
<title><![CDATA[Xi shores up China's sway in Pyongyang, wary of North Korea-Russia ties]]></title>
|
||||
<link>https://asia.nikkei.com/politics/international-relations/xi-shores-up-china-s-sway-in-pyongyang-wary-of-north-korea-russia-ties</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/opinion/south-korea-election-yoon-s-legacy-partially-survives-progressive-victory">
|
||||
<title><![CDATA[South Korea election: Yoon's legacy partially survives progressive victory]]></title>
|
||||
<link>https://asia.nikkei.com/opinion/south-korea-election-yoon-s-legacy-partially-survives-progressive-victory</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/automobiles/electric-vehicles/chinese-entrepreneur-s-e-truck-startup-windrose-faces-unpaid-wage-claims">
|
||||
<title><![CDATA[Chinese entrepreneur's e-truck startup Windrose faces unpaid wage claims]]></title>
|
||||
<link>https://asia.nikkei.com/business/automobiles/electric-vehicles/chinese-entrepreneur-s-e-truck-startup-windrose-faces-unpaid-wage-claims</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/economy/bank-indonesia-raises-rates-0.25-at-emergency-meeting-to-defend-rupiah">
|
||||
<title><![CDATA[Bank Indonesia raises rates 0.25% at emergency meeting to defend rupiah]]></title>
|
||||
<link>https://asia.nikkei.com/economy/bank-indonesia-raises-rates-0.25-at-emergency-meeting-to-defend-rupiah</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/spotlight/the-future-of-asia/future-of-asia-2026/japan-ex-pm-kishida-calls-for-deeper-energy-ties-with-south-korea">
|
||||
<title><![CDATA[Japan ex-PM Kishida calls for deeper energy ties with South Korea]]></title>
|
||||
<link>https://asia.nikkei.com/spotlight/the-future-of-asia/future-of-asia-2026/japan-ex-pm-kishida-calls-for-deeper-energy-ties-with-south-korea</link>
|
||||
</item>
|
||||
<item rdf:about="https://asia.nikkei.com/business/markets/equities/binance-eyes-asian-stock-trading-as-bitcoin-slumps">
|
||||
<title><![CDATA[Binance eyes Asian stock trading as Bitcoin slumps]]></title>
|
||||
<link>https://asia.nikkei.com/business/markets/equities/binance-eyes-asian-stock-trading-as-bitcoin-slumps</link>
|
||||
</item>
|
||||
</rdf:RDF>
|
||||
@@ -0,0 +1,281 @@
|
||||
"""crawl-24x7 사이클 3 — 순수 함수/형태 회귀 테스트 (DB 불요).
|
||||
|
||||
B-4 signal-only(본문 무절단 + enqueue 가드) + C-4 피드 shape + CSB sitemap diff 파서
|
||||
+ API 공지 목록 파서 + CCPS beacon 링크 파서 + B-5 (Nikkei RDF = feedparser 네이티브,
|
||||
코드 분기 불요 박제).
|
||||
|
||||
fixture = 2026-06-11 live 박제 (tests/fixtures/, [[feedback_external_api_fixture_first]]).
|
||||
economist/ieee 는 repo 크기 사유로 item 수만 trim (헤더/푸터/item 구조 byte-faithful).
|
||||
"""
|
||||
|
||||
import re
|
||||
from datetime import datetime, timedelta, timezone
|
||||
from pathlib import Path
|
||||
from types import SimpleNamespace
|
||||
|
||||
import feedparser
|
||||
import pytest
|
||||
|
||||
from workers import news_collector
|
||||
from workers.api_standards_collector import _parse_listing, _parse_pub_date
|
||||
from workers.ccps_collector import _beacon_pdf_links
|
||||
from workers.csb_collector import _parse_sitemap, _pdf_links, _should_skip
|
||||
from workers.news_collector import _clean_html, _entry_body
|
||||
|
||||
FIXTURES = Path(__file__).parent / "fixtures"
|
||||
|
||||
|
||||
def _feed(name: str):
|
||||
return feedparser.parse((FIXTURES / name).read_text(encoding="utf-8"))
|
||||
|
||||
|
||||
def _source(**kw):
|
||||
return SimpleNamespace(
|
||||
fetch_method=kw.get("fetch_method", "rss"),
|
||||
fulltext_policy=kw.get("fulltext_policy", "none"),
|
||||
source_channel=kw.get("source_channel", "news"),
|
||||
)
|
||||
|
||||
|
||||
# ── B-4: 본문 선택 정책 ───────────────────────────────────────────────────────
|
||||
|
||||
class TestEntryBodyPolicy:
|
||||
def test_signal_only_preserves_full_abstract(self):
|
||||
"""arXiv 초록 1.6K자 — 기본 1000자 cap 을 적용하면 꼬리 유실."""
|
||||
entry = _feed("arxiv_appph_rss.xml").entries[0]
|
||||
summary = _clean_html(entry.get("summary", "")) # 기본 경로 = 1000자 절단
|
||||
body, ver = _entry_body(_source(fetch_method="signal-only"), entry, summary)
|
||||
assert ver == "rss-signal"
|
||||
assert len(body) > 1000 >= len(summary)
|
||||
assert "Abstract" in body
|
||||
|
||||
def test_feed_full_promotes_ieee_description(self):
|
||||
entry = _feed("ieee_spectrum_energy_rss.xml").entries[0]
|
||||
summary = _clean_html(entry.get("summary", ""))
|
||||
body, ver = _entry_body(_source(fulltext_policy="feed-full"), entry, summary)
|
||||
assert ver == "rss-feed-full"
|
||||
assert len(body) > 1000
|
||||
|
||||
def test_default_source_keeps_capped_summary(self):
|
||||
entry = _feed("arxiv_appph_rss.xml").entries[0]
|
||||
summary = _clean_html(entry.get("summary", ""))
|
||||
body, ver = _entry_body(_source(), entry, summary)
|
||||
assert ver == "rss"
|
||||
assert body == summary
|
||||
|
||||
def test_signal_only_title_fallback_when_feed_has_no_summary(self):
|
||||
"""Nikkei RDF = description 없음 — summary 인자(=title 폴백)로 격하."""
|
||||
entry = _feed("nikkei_asia_nar_rdf.xml").entries[0]
|
||||
body, ver = _entry_body(
|
||||
_source(fetch_method="signal-only"), entry, entry.get("title", "")
|
||||
)
|
||||
assert ver == "rss-signal"
|
||||
assert body == entry.get("title", "") != ""
|
||||
|
||||
|
||||
# ── B-4: enqueue 가드 (signal-only = fulltext/summarize 절대 금지) ────────────
|
||||
|
||||
class TestSignalOnlyEnqueueGuard:
|
||||
@staticmethod
|
||||
def _patch(monkeypatch):
|
||||
calls = []
|
||||
|
||||
async def fake_enqueue(session, doc_id, stage):
|
||||
calls.append(stage)
|
||||
|
||||
monkeypatch.setattr(news_collector, "enqueue_stage", fake_enqueue)
|
||||
return calls
|
||||
|
||||
@pytest.mark.asyncio
|
||||
async def test_signal_only_overrides_misconfigured_page_policy(self, monkeypatch):
|
||||
"""레지스트리가 fulltext_policy='page' 로 잘못 설정돼도 페이지 fetch 0 (방어)."""
|
||||
calls = self._patch(monkeypatch)
|
||||
doc = SimpleNamespace(id=1, edit_url="https://x/a")
|
||||
src = _source(fetch_method="signal-only", fulltext_policy="page")
|
||||
await news_collector._enqueue_processing(
|
||||
None, doc, src, datetime.now(timezone.utc)
|
||||
)
|
||||
assert calls == ["embed", "chunk"] # fulltext/summarize 부재
|
||||
|
||||
@pytest.mark.asyncio
|
||||
async def test_signal_only_news_respects_30day_gate(self, monkeypatch):
|
||||
calls = self._patch(monkeypatch)
|
||||
doc = SimpleNamespace(id=1, edit_url="https://x/a")
|
||||
old = datetime.now(timezone.utc) - timedelta(days=40)
|
||||
await news_collector._enqueue_processing(
|
||||
None, doc, _source(fetch_method="signal-only"), old
|
||||
)
|
||||
assert calls == []
|
||||
|
||||
@pytest.mark.asyncio
|
||||
async def test_signal_only_crawl_channel_indexes_regardless_of_age(self, monkeypatch):
|
||||
calls = self._patch(monkeypatch)
|
||||
doc = SimpleNamespace(id=1, edit_url="https://x/a")
|
||||
old = datetime.now(timezone.utc) - timedelta(days=400)
|
||||
src = _source(fetch_method="signal-only", source_channel="crawl")
|
||||
await news_collector._enqueue_processing(None, doc, src, old)
|
||||
assert calls == ["embed", "chunk"]
|
||||
|
||||
|
||||
# ── C-4 / B-4 피드 shape (시드 전 live 박제) ─────────────────────────────────
|
||||
|
||||
class TestNikkeiRdfNativeParsing:
|
||||
"""B-5 'rdf' quirk = 코드 분기 불요 실측 — feedparser 가 RSS 1.0 을 정규화."""
|
||||
|
||||
def test_rss10_entries_have_title_and_link(self):
|
||||
f = _feed("nikkei_asia_nar_rdf.xml")
|
||||
assert f.version == "rss10"
|
||||
assert not f.bozo and len(f.entries) >= 10
|
||||
for e in f.entries:
|
||||
assert e.get("title", "").strip()
|
||||
assert e.get("link", "").startswith("https://asia.nikkei.com/")
|
||||
|
||||
def test_no_summary_no_dates_means_title_signal(self):
|
||||
e = _feed("nikkei_asia_nar_rdf.xml").entries[0]
|
||||
assert not e.get("summary", "")
|
||||
assert not e.get("published_parsed") and not e.get("updated_parsed")
|
||||
|
||||
|
||||
class TestBloombergFixture:
|
||||
def test_video_items_mixed_in_feed(self):
|
||||
"""비디오 항목 혼재 실측 → seed parser_quirk='skip-video' 의 근거."""
|
||||
links = [e.get("link", "") for e in _feed("bloomberg_markets_rss.xml").entries]
|
||||
video_pat = re.compile(r"/videos?/") # news_collector skip-video 와 동일 패턴
|
||||
assert any(video_pat.search(u) for u in links)
|
||||
assert any("/news/articles/" in u and not video_pat.search(u) for u in links)
|
||||
|
||||
def test_articles_have_signal_grade_summary(self):
|
||||
f = _feed("bloomberg_markets_rss.xml")
|
||||
assert any(len(e.get("summary", "")) >= 100 for e in f.entries)
|
||||
|
||||
|
||||
class TestAsmeJpvtFixture:
|
||||
def test_journal_identity_and_abstract(self):
|
||||
f = _feed("asme_jpvt_openissues_rss.xml")
|
||||
assert "Pressure Vessel Technology" in f.feed.get("title", "")
|
||||
assert f.entries
|
||||
for e in f.entries:
|
||||
assert len(e.get("summary", "")) >= 200 # 초록 = 본문
|
||||
|
||||
|
||||
class TestArxivFixture:
|
||||
def test_abs_links_are_stable_dedup_keys(self):
|
||||
"""replace/cross 재공지는 같은 /abs/ URL — edit_url dedup 이 자연 차단."""
|
||||
f = _feed("arxiv_appph_rss.xml")
|
||||
assert f.entries
|
||||
for e in f.entries:
|
||||
assert re.match(r"https://arxiv\.org/abs/\d", e.get("link", ""))
|
||||
|
||||
def test_announce_type_in_summary(self):
|
||||
e = _feed("arxiv_appph_rss.xml").entries[0]
|
||||
assert "Announce Type:" in e.get("summary", "")
|
||||
|
||||
|
||||
class TestEconomistFixture:
|
||||
def test_oneline_signal_summaries(self):
|
||||
f = _feed("economist_latest_rss.xml")
|
||||
assert f.entries
|
||||
for e in f.entries:
|
||||
assert e.get("title", "").strip()
|
||||
assert e.get("link", "").startswith("https://www.economist.com/")
|
||||
|
||||
|
||||
# ── CSB sitemap diff 파서 ────────────────────────────────────────────────────
|
||||
|
||||
class TestCsbSitemapParsing:
|
||||
def test_parse_pairs_with_tz_aware_lastmod(self):
|
||||
xml = (FIXTURES / "csb_sitemap_sample.xml").read_text(encoding="utf-8")
|
||||
pairs = _parse_sitemap(xml)
|
||||
assert pairs
|
||||
for url, lastmod in pairs:
|
||||
assert url.startswith("https://www.csb.gov/")
|
||||
assert lastmod.tzinfo is not None
|
||||
|
||||
def test_skip_sections_vs_root_slugs(self):
|
||||
assert _should_skip("https://www.csb.gov/videos/some-video/")
|
||||
assert _should_skip("https://www.csb.gov/investigations/completed-investigations/")
|
||||
assert _should_skip("https://www.csb.gov/site-map/")
|
||||
assert _should_skip("https://www.csb.gov/") # 홈
|
||||
# 조사 보고서/뉴스 릴리스 = 루트 슬러그 — 수집 대상
|
||||
assert not _should_skip("https://www.csb.gov/givaudan-sense-colour-explosion-/")
|
||||
assert not _should_skip("https://www.csb.gov/recommendations/preventive-maintenance/")
|
||||
|
||||
def test_watermark_diff_orders_oldest_first(self):
|
||||
xml = (FIXTURES / "csb_sitemap_sample.xml").read_text(encoding="utf-8")
|
||||
pairs = [p for p in _parse_sitemap(xml) if not _should_skip(p[0])]
|
||||
watermark = min(lm for _, lm in pairs)
|
||||
changed = sorted(
|
||||
((u, lm) for u, lm in pairs if lm >= watermark), key=lambda p: p[1]
|
||||
)
|
||||
assert changed == sorted(changed, key=lambda p: p[1])
|
||||
assert len(changed) == len(pairs) # >= 경계 포함
|
||||
|
||||
|
||||
class TestCsbPdfLinks:
|
||||
HTML = (FIXTURES / "csb_investigation_page_excerpt.html").read_text(encoding="utf-8")
|
||||
BASE = "https://www.csb.gov/givaudan-sense-colour-explosion-/"
|
||||
|
||||
def test_report_pdfs_kept_with_cachebuster_query(self):
|
||||
links = _pdf_links(self.HTML, self.BASE)
|
||||
assert any("Givaudan_Investigation_Report_Publication.pdf" in u for u in links)
|
||||
# cache-buster 쿼리는 다운로드 URL 에 유지 (정규화는 파일명/dedup 축에서만)
|
||||
assert any("?" in u for u in links)
|
||||
for u in links:
|
||||
assert u.startswith("https://www.csb.gov/")
|
||||
|
||||
def test_recommendation_status_summaries_excluded(self):
|
||||
links = _pdf_links(self.HTML, self.BASE)
|
||||
assert links
|
||||
assert not any("/assets/recommendation/" in u for u in links)
|
||||
|
||||
def test_dedup_by_path(self):
|
||||
html = (
|
||||
'<a href="/assets/1/6/r.pdf?100">a</a>'
|
||||
'<a href="/assets/1/6/r.pdf?200">b</a>'
|
||||
'<a href="https://evil.example.com/x.pdf">c</a>'
|
||||
)
|
||||
links = _pdf_links(html, "https://www.csb.gov/page/")
|
||||
assert len(links) == 1 # 같은 path 1회 + 외부 호스트 제외
|
||||
assert links[0].startswith("https://www.csb.gov/assets/1/6/r.pdf")
|
||||
|
||||
|
||||
# ── API 표준 공지 목록 파서 ──────────────────────────────────────────────────
|
||||
|
||||
class TestApiListingParsing:
|
||||
HTML = (FIXTURES / "api_standards_announcements_listing.html").read_text(
|
||||
encoding="utf-8", errors="replace"
|
||||
)
|
||||
|
||||
def test_ten_unique_detail_links_per_page(self):
|
||||
urls = _parse_listing(self.HTML)
|
||||
assert len(urls) == 10
|
||||
assert len(set(urls)) == 10
|
||||
for u in urls:
|
||||
assert u.startswith(
|
||||
"https://www.api.org/products-and-services/standards/"
|
||||
"important-standards-announcements/"
|
||||
)
|
||||
assert "?" not in u # 페이지네이션 링크(?page=) 미혼입
|
||||
|
||||
def test_pub_date_parse(self):
|
||||
dt = _parse_pub_date("Published June 4, 2026 — API announces ...")
|
||||
assert dt == datetime(2026, 6, 4, tzinfo=timezone.utc)
|
||||
assert _parse_pub_date("no date here") is None
|
||||
assert _parse_pub_date("February 31, 2026") is None # 달력 불가 = None
|
||||
|
||||
|
||||
# ── CCPS beacon 링크 파서 ────────────────────────────────────────────────────
|
||||
|
||||
class TestCcpsBeaconLinks:
|
||||
def test_beacon_filter_and_relative_resolve(self):
|
||||
html = (
|
||||
'<a href="/sites/default/files/2026-06/Beacon-June-2026.pdf">June</a>'
|
||||
'<a href="/sites/default/files/beacon_korean_2026_06.pdf"><b>Korean</b></a>'
|
||||
'<a href="/sites/default/files/other-brochure.pdf">brochure</a>'
|
||||
'<a href="/sites/default/files/monthly.pdf">Process Safety Beacon June</a>'
|
||||
)
|
||||
links = _beacon_pdf_links(html, "https://www.aiche.org/ccps/resources/process-safety-beacon")
|
||||
assert "https://www.aiche.org/sites/default/files/2026-06/Beacon-June-2026.pdf" in links
|
||||
assert any("beacon_korean" in u for u in links)
|
||||
assert any(u.endswith("/monthly.pdf") for u in links) # 앵커 텍스트 매칭
|
||||
assert not any("other-brochure" in u for u in links)
|
||||
Reference in New Issue
Block a user