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高階動力P91/P92配管能彎則不銲的去銲接化趨勢:8吋以下冷作彎管與IH-PBHT及履歷數位化的整合工法分析研究 (The “Minimize Welding” Trend in Advanced P91/P92 Piping: An Integrated Construction Methodology Analysis of Cold Bending (≤8″) with IH-PBHT and Digital Traceability)

一、 緒論與高階動力產業之典範轉移 在全球能源結構轉型與發電效率極大化的雙重戰略驅動下,現代化的高階動力設施正 […]

高階動力P91/P92配管能彎則不銲的去銲接化趨勢:8吋以下冷作彎管與IH-PBHT及履歷數位化的整合工法分析研究 (The “Minimize Welding” Trend in Advanced P91/P92 Piping: An Integrated Construction Methodology Analysis of Cold Bending (≤8″) with IH-PBHT and Digital Traceability) 閱讀全文 »

基於數位孿生與去銲化技術的高能管線完整性管理:從冷彎幾何設計到 IH-PBHT 數位履歷 (Integrity Management of High-Energy Piping Based on Digital Twin and De-welding Technologies: From Cold-Bending Geometric Design to IH-PBHT Digital Pedigree)

摘要 隨著先進燃氣複循環電廠(CCPP)與現代石化設施的運行參數不斷向高溫、高壓的超臨界邊界突破,高能管線(H

基於數位孿生與去銲化技術的高能管線完整性管理:從冷彎幾何設計到 IH-PBHT 數位履歷 (Integrity Management of High-Energy Piping Based on Digital Twin and De-welding Technologies: From Cold-Bending Geometric Design to IH-PBHT Digital Pedigree) 閱讀全文 »

幾何避險:長半徑彎管對第四代核反應器高能管線熱循環應力峰值之平滑效應與微觀力學解析 (Geometric Mitigation: Smoothing Effects of Long-Radius Elbows on Peak Thermal Cycling Stresses in Gen IV Nuclear High-Energy Piping and Micromechanical Analysis)

摘要 第四代核反應器具備極端的高溫與高輻射服役環境,其高能管線系統需承受長期熱循環與交變應變。傳統 1.5D

幾何避險:長半徑彎管對第四代核反應器高能管線熱循環應力峰值之平滑效應與微觀力學解析 (Geometric Mitigation: Smoothing Effects of Long-Radius Elbows on Peak Thermal Cycling Stresses in Gen IV Nuclear High-Energy Piping and Micromechanical Analysis) 閱讀全文 »

國際水與蒸汽性質協會(IAPWS)「2與5法則」於電廠流動加速腐蝕抑制、監控與防護之深度分析報告 (In-depth Analysis Report on the IAPWS “Rule of 2 and 5” for the Inhibition, Monitoring, and Protection of Flow-Accelerated Corrosion (FAC) in Power Plants)

一、 引言與流動加速腐蝕(FAC)的科學基礎與歷史脈絡 在現代火力發電廠、核能電廠以及配備熱回收鍋爐(HRSG

國際水與蒸汽性質協會(IAPWS)「2與5法則」於電廠流動加速腐蝕抑制、監控與防護之深度分析報告 (In-depth Analysis Report on the IAPWS “Rule of 2 and 5” for the Inhibition, Monitoring, and Protection of Flow-Accelerated Corrosion (FAC) in Power Plants) 閱讀全文 »

高能管線「去銲化」策略之實踐:長半徑冷/熱彎管技術與 IH-PBHT 在 HTR-PM 與 CCPP 項目之對比研究 (Practice of “De-welding” Strategy for High-Energy Piping: A Comparative Study of Long-radius Cold/Hot Induction Bends and IH-PBHT in HTR-PM and CCPP Projects)

摘要 隨著全球能源結構的轉型,先進發電設施面臨著前所未有的技術挑戰與運行壓力。一方面,具備高度調峰靈活性與快速

高能管線「去銲化」策略之實踐:長半徑冷/熱彎管技術與 IH-PBHT 在 HTR-PM 與 CCPP 項目之對比研究 (Practice of “De-welding” Strategy for High-Energy Piping: A Comparative Study of Long-radius Cold/Hot Induction Bends and IH-PBHT in HTR-PM and CCPP Projects) 閱讀全文 »

石島灣 HTR-PM 高能管線固有安全性之具體設計邏輯與微觀力學解析 (Specific Design Logic and Micromechanical Analysis of High-Energy Piping Inherent Safety in the Shidao Bay HTR-PM)

一、引言 第四代核能技術(Generation IV Nuclear Energy Systems)的發展核心

石島灣 HTR-PM 高能管線固有安全性之具體設計邏輯與微觀力學解析 (Specific Design Logic and Micromechanical Analysis of High-Energy Piping Inherent Safety in the Shidao Bay HTR-PM) 閱讀全文 »

燃氣複循環發電機組熱回收鍋爐管線破裂與銲道劣化之肇因分析與綜合對策研究 (Root Cause Analysis and Comprehensive Countermeasures for Tube Rupture and Weld Degradation in Heat Recovery Steam Generators of Combined Cycle Power Plants)

一、緒論 燃氣複循環發電機組(Combined Cycle Gas Turbine, CCGT)憑藉其卓越的熱

燃氣複循環發電機組熱回收鍋爐管線破裂與銲道劣化之肇因分析與綜合對策研究 (Root Cause Analysis and Comprehensive Countermeasures for Tube Rupture and Weld Degradation in Heat Recovery Steam Generators of Combined Cycle Power Plants) 閱讀全文 »

改良型9Cr-1Mo合金鋼P91管線預製技術之微觀組織演變與蠕變強度分析:感應熱彎與冷作彎管工法比較 (Microstructural Evolution and Creep Strength Analysis of Modified 9Cr-1Mo (P91) Steel in Pipeline Prefabrication: A Comparison of Induction Bending and Cold Bending Processes)

一、 導論:現代先進發電廠管線預製之熱力學與力學挑戰 在全球能源需求持續攀升與極端氣候變遷的雙重壓力下,現代發

改良型9Cr-1Mo合金鋼P91管線預製技術之微觀組織演變與蠕變強度分析:感應熱彎與冷作彎管工法比較 (Microstructural Evolution and Creep Strength Analysis of Modified 9Cr-1Mo (P91) Steel in Pipeline Prefabrication: A Comparison of Induction Bending and Cold Bending Processes) 閱讀全文 »

結合第四代反應爐與 SMR 技術之去銲接化工法:P91/P92 高級合金鋼彎管技術在台灣複循環電廠更新工程之冶金優勢與合規評估 (Weld-less Construction Methods Integrating Gen IV Reactors and SMR Technologies: Metallurgical Advantages and Compliance Assessment of P91/P92 High-Alloy Steel Bending in Taiwan’s Combined Cycle Power Plant Retrofit Projects)

一、緒論與全球能源基礎設施之轉型挑戰 在全球能源轉型與淨零碳排(Net Zero)的戰略目標下,提升發電設施的

結合第四代反應爐與 SMR 技術之去銲接化工法:P91/P92 高級合金鋼彎管技術在台灣複循環電廠更新工程之冶金優勢與合規評估 (Weld-less Construction Methods Integrating Gen IV Reactors and SMR Technologies: Metallurgical Advantages and Compliance Assessment of P91/P92 High-Alloy Steel Bending in Taiwan’s Combined Cycle Power Plant Retrofit Projects) 閱讀全文 »

在2026 ASME規範下探討潁璋工程之專案執行力與技術潛力:從CCPP建案實績到SMR管線設計挑戰之應對 (Exploring the Project Execution and Technical Potential of Ying Zhang Engineering & Industry Co., Ltd. Under 2026 ASME Codes: From CCPP Construction Track Records to Addressing SMR Pipeline Design Challenges)

一、 緒論與研究背景 在全球能源基礎設施面臨深度低碳轉型與淨零排放目標的關鍵時代,發電系統的技術演進正處於歷史

在2026 ASME規範下探討潁璋工程之專案執行力與技術潛力:從CCPP建案實績到SMR管線設計挑戰之應對 (Exploring the Project Execution and Technical Potential of Ying Zhang Engineering & Industry Co., Ltd. Under 2026 ASME Codes: From CCPP Construction Track Records to Addressing SMR Pipeline Design Challenges) 閱讀全文 »

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