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New Steel Alloys for the Design of Heat Recovery Steam Generator Components of Combined Cycle Gas Plants

机译:用于联合循环燃气厂热回收蒸汽发生器零件设计的新钢合金。

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摘要

Demand for power is growing every day, mainly due to emerging economies in countries such as China, Russia, India, and Brazil. During the last 50 years steam pressure and temperature in power plants have been continuously raised to improve thermal efficiency. Recent efforts to improve efficiency leads to the development of a new generation of heat recovery steam generator, where the Benson once-through technology is applied to improve the thermal efficiency. The main purpose of this paper is to analyze the mechanical behavior of a high pressure superheater manifold by applying finite element modeling and a finite element analysis with the objective of analyzing stress propagation, leading to the study of damage mechanism, e.g., uniaxial fatigue, uniaxial creep for life prediction. The objective of this paper is also to analyze the mechanical properties of the new high temperature resistant materials in the market such as 2Cr Bainitic steels (T/P23 and T/P24) and also the 9-12Cr Martensitic steels (T/P91, T/P92, E911, and P/T122). For this study the design rules for construction of power boilers to define the geometry of the HPSH manifold were applied.
机译:电力需求每天都在增长,这主要归功于中国,俄罗斯,印度和巴西等国家的新兴经济体。在过去的50年中,发电厂的蒸汽压力和温度不断提高,以提高热效率。最近为提高效率而做出的努力导致了新一代热回收蒸汽发生器的开发,其中采用了Benson直通式技术来提高热效率。本文的主要目的是通过应用有限元建模和有限元分析来分析高压过热器歧管的机械性能,以分析应力传播为目标,从而研究单轴疲劳,单轴疲劳机理。爬行以预测生活。本文的目的还在于分析市场上新型耐高温材料的机械性能,例如2Cr贝氏体钢(T / P23和T / P24)以及9-12Cr马氏体钢(T / P91,T / P92,E911和P / T122)。在本研究中,应用了用于定义HPSH歧管几何形状的动力锅炉的设计规则。

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