潁璋 Cold Bending 園地
基於 ASME B31.1 與 B31J 規範之燃氣複循環發電廠高壓蒸汽管線動態負荷緩解與幾何最佳化研究:冷作彎管與無積水區設計之整合應用 (Research on Dynamic Load Mitigation and Geometric Optimization of High-Pressure Steam Piping in Gas-Fired Combined Cycle Power Plants Based on ASME B31.1 and B31J Codes: Integrated Application of Cold Bends and Non-Pooling Zone Design)
摘要 在全球能源轉型與深度減碳的政策驅動下,現代燃
2026-07-30
基於2026版ASME B31.1與B31J規範CCPP高壓動力管線工程優化研究:微觀冶金與巨觀力學解耦下CNC冷作彎管實證分析 (Engineering Optimization Study of High-Pressure Power Piping in Combined Cycle Power Plants Based on 2026 ASME B31.1 and B31J Codes: An Empirical Analysis of CNC Cold-Bent Pipes Under Microscopic Metallurgical and Macroscopic Mechanical Decoupling)
副標題: 從工程總承包商專案經理的宏觀與微觀視角剖
2026-07-29
燃氣複循環電廠 (CCPP) 熱回收蒸汽產生器 (HRSG) 頻繁交變負載下之管線工程優化:以 CNC 冷作彎管取代 NBEP 銲接彎頭之結構穩定性與疲勞可靠度深度分析 (Optimization of CCPP HRSG Piping Engineering Under Frequent Cyclic Loading: An In-Depth Analysis of Structural Stability and Fatigue Reliability When Replacing NBEP Welded Elbows with CNC Cold Bends)
一 緒論與當代發電產業之熱力學挑戰 在全球能源結構
2026-07-29
基於 ASME B31J 規範之 P91/P92 高能蒸汽管線冷作彎管工法優勢評估:以應力強化係數 (SIF) 與流體沖蝕改善為核心 (Evaluating the Advantages of the Cold Bending Process for P91/P92 High-Energy Steam Piping Based on ASME B31J: Focusing on Stress Intensification Factor (SIF) and Fluid Erosion Mitigation)
摘要 在現代電力工業追求極致熱效率與深度減碳的雙重
2026-07-28
複循環發電廠熱回收蒸汽產生器頻繁交變負載下的管線工程優化:CNC冷作彎管真圓度對流體沖蝕與結構穩定性之深度分析 (Optimization of Piping Engineering for Heat Recovery Steam Generators under Frequent Cyclic Loading in Combined Cycle Power Plants: An In-Depth Analysis of CNC Cold-Bent Pipe Ovality on Fluid Erosion and Structural Stability)
一、 摘要與緒論 在全球能源轉型的浪潮下,複循環發
2026-07-28
