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複循環發電廠高能管線冷作彎管工法對專案要徑之影響與效益評估——在地實證與產業應用:以潁璋工程為例 (Impact and Benefit Assessment of Cold Bending Techniques for High-Energy Piping on the Project Critical Path in Combined Cycle Power Plants: Local Empirical Evidence and Industrial Application — A Case Study of Ying Zhang Engineering)

摘要 在全球能源結構急遽轉向低碳化與再生能源之際,天然氣複循環發電廠(Combined Cycle Power […]

複循環發電廠高能管線冷作彎管工法對專案要徑之影響與效益評估——在地實證與產業應用:以潁璋工程為例 (Impact and Benefit Assessment of Cold Bending Techniques for High-Energy Piping on the Project Critical Path in Combined Cycle Power Plants: Local Empirical Evidence and Industrial Application — A Case Study of Ying Zhang Engineering) 閱讀全文 »

複循環發電廠高能管線冷作彎管工法對專案要徑之影響與效益評估 (Impact and Benefit Evaluation of the Cold Bending Method for High-Energy Piping on the Project Critical Path in Combined Cycle Power Plants)

摘要 在全球能源結構急遽轉向低碳化與再生能源之際,天然氣複循環發電廠(Combined Cycle Power

複循環發電廠高能管線冷作彎管工法對專案要徑之影響與效益評估 (Impact and Benefit Evaluation of the Cold Bending Method for High-Energy Piping on the Project Critical Path in Combined Cycle Power Plants) 閱讀全文 »

基於晶體塑性與損傷力學之高溫管線銲接熱影響區(Type IV)與彎管應力耦合潛變失效有限元模擬:以 9~12% Cr 耐熱鋼(如 P91/P92)超超臨界蒸汽管線為例 (Finite Element Simulation of Stress-Coupled Creep Failure in Type IV Weld HAZ and Pipe Bends Based on Crystal Plasticity and Damage Mechanics: A Case Study of 9-12% Cr (e.g., P91/P92) Ultra-Supercritical Steam Pipelines)

摘要 在全球能源轉型與減少溫室氣體排放的宏觀背景下,提升火力發電廠之熱力學循環效率成為當代能源工程的核心挑戰。

基於晶體塑性與損傷力學之高溫管線銲接熱影響區(Type IV)與彎管應力耦合潛變失效有限元模擬:以 9~12% Cr 耐熱鋼(如 P91/P92)超超臨界蒸汽管線為例 (Finite Element Simulation of Stress-Coupled Creep Failure in Type IV Weld HAZ and Pipe Bends Based on Crystal Plasticity and Damage Mechanics: A Case Study of 9-12% Cr (e.g., P91/P92) Ultra-Supercritical Steam Pipelines) 閱讀全文 »

針對 650°C 超超臨界機組 P92 主蒸氣支管冷作彎管工法、成形後熱處理與後續檢測之分析報告 (Analysis Report on the Cold Bending Process, Post-Forming Heat Treatment, and Subsequent Inspection of P92 Main Steam Branch Pipes for 650°C Ultra-Supercritical Units)

摘要 隨著全球發電產業向超超臨界(Ultra-Supercritical, USC)與先進超超臨界(A-USC

針對 650°C 超超臨界機組 P92 主蒸氣支管冷作彎管工法、成形後熱處理與後續檢測之分析報告 (Analysis Report on the Cold Bending Process, Post-Forming Heat Treatment, and Subsequent Inspection of P92 Main Steam Branch Pipes for 650°C Ultra-Supercritical Units) 閱讀全文 »

高黏滯流體管線系統升級研究:大曲率冷作彎管之流場解析、幾何變形與配管工程實務 (Research on the Upgrade of High-Viscosity Fluid Piping Systems: Flow Field Analysis, Geometric Deformation, and Piping Engineering Practices of Large-Curvature Cold-Formed Bends)

摘要 在現代化學、石化、製藥、化妝品以及食品加工等高度專業化之產業中,高黏滯流體(如樹脂、聚氨酯、工業塗料、糖

高黏滯流體管線系統升級研究:大曲率冷作彎管之流場解析、幾何變形與配管工程實務 (Research on the Upgrade of High-Viscosity Fluid Piping Systems: Flow Field Analysis, Geometric Deformation, and Piping Engineering Practices of Large-Curvature Cold-Formed Bends) 閱讀全文 »

複循環發電廠支管蒸氣配管工程中1.5D/3D/5D彎管對流場擾動、管壁沖蝕及計量精確度影響之研究報告 (A Study on the Effects of 1.5D/3D/5D Pipe Bends on Flow Field Disturbance, Wall Erosion, and Measurement Accuracy in Branch Steam Piping of Combined Cycle Power Plants)

摘要 隨著全球能源結構的急遽轉型,現代複循環發電廠(Combined Cycle Power Plant, C

複循環發電廠支管蒸氣配管工程中1.5D/3D/5D彎管對流場擾動、管壁沖蝕及計量精確度影響之研究報告 (A Study on the Effects of 1.5D/3D/5D Pipe Bends on Flow Field Disturbance, Wall Erosion, and Measurement Accuracy in Branch Steam Piping of Combined Cycle Power Plants) 閱讀全文 »

深度分析彎後熱處理(PBHT)對減緩 P91/P92 鋼彎管末端電銲接合處 Type IV 潛變失效之微觀組織與性能最佳化 (In-Depth Analysis of Post-Bend Heat Treatment (PBHT) on Mitigating Type IV Creep Failure and Optimizing Microstructure and Properties at End Welded Joints of P91/P92 Steel Pipe Bends)

一、 緒論與研究背景 隨著全球對發電效率與降低溫室氣體排放的標準日益嚴苛,先進燃煤及複循環發電廠已全面朝向超臨

深度分析彎後熱處理(PBHT)對減緩 P91/P92 鋼彎管末端電銲接合處 Type IV 潛變失效之微觀組織與性能最佳化 (In-Depth Analysis of Post-Bend Heat Treatment (PBHT) on Mitigating Type IV Creep Failure and Optimizing Microstructure and Properties at End Welded Joints of P91/P92 Steel Pipe Bends) 閱讀全文 »

基於微觀組織演變之鉻鉬鋼銲接熱影響區(Type IV)與冷作彎管殘留應力耦合潛變破壞機制研究 (Investigation on the Coupling Creep Damage Mechanism of Chromium-Molybdenum Steel Welded HAZ (Type IV) and Cold-Bent Pipe Residual Stress Based on Microstructural Evolution)

一、緒論 為了應對全球溫室氣體排放的挑戰與持續增長的能源需求,現代火力發電廠正朝向超臨界(Supercriti

基於微觀組織演變之鉻鉬鋼銲接熱影響區(Type IV)與冷作彎管殘留應力耦合潛變破壞機制研究 (Investigation on the Coupling Creep Damage Mechanism of Chromium-Molybdenum Steel Welded HAZ (Type IV) and Cold-Bent Pipe Residual Stress Based on Microstructural Evolution) 閱讀全文 »

高溫管線冷作彎曲殘留應力對熱影響區細晶帶(FGHAZ)潛變壽命影響之有限元素模擬與預測 (Finite Element Simulation and Prediction of the Effect of Cold Bending Residual Stress on the Creep Life of Fine-Grained Heat-Affected Zone (FGHAZ) in High-Temperature Pipelines)

摘要 在現代超臨界(SC)與超超臨界(USC)火力發電廠及先進核能系統中,高溫高壓蒸汽管線的結構完整性直接決定

高溫管線冷作彎曲殘留應力對熱影響區細晶帶(FGHAZ)潛變壽命影響之有限元素模擬與預測 (Finite Element Simulation and Prediction of the Effect of Cold Bending Residual Stress on the Creep Life of Fine-Grained Heat-Affected Zone (FGHAZ) in High-Temperature Pipelines) 閱讀全文 »

基於邊界煙氣流場最佳化:燃燒爐爐管防護板結構改良與高溫夾縫腐蝕防治研究 (Optimization of Boundary Flue Gas Flow Field: Structural Improvement of Boiler Tube Shields and Research on High-Temperature Crevice Corrosion Prevention)

一、 緒論 在現代全球能源轉型的宏觀背景下,火力發電、生質能發電(Biomass Power Generati

基於邊界煙氣流場最佳化:燃燒爐爐管防護板結構改良與高溫夾縫腐蝕防治研究 (Optimization of Boundary Flue Gas Flow Field: Structural Improvement of Boiler Tube Shields and Research on High-Temperature Crevice Corrosion Prevention) 閱讀全文 »

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