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Diffusion bonded heat exchangers (PCHEs) in Fuel Gas Heating to Improve efficiency of CCGTs

机译:燃料气体加热中的扩散粘合热交换器(PCHE)以提高CCGT的效率

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The purpose of this paper is to show how compact heat exchanger technology can offer energy savings and hence cycle efficiency improvements on new and existing gas turbine installations by being utilised for fuel gas heating. After a brief introduction to high temperature compact heat exchanger technology and comparison to traditional equipment, thermodynamic cycle analysis for a combined cycle gas turbine plant (CCGT) is used show the advantages of compact technology over conventional technology, analysing the fuel gas heating, to illustrate the overall savings. A case study is used to demonstrate an increase in net LHV electric efficiency in the range of 0.5 to 1.17 % achievable using high effectiveness compact diffusion bonded heat exchangers in fuel gas heating. Intermediate pressure and high pressure feed water heating is considered for increasing the fuel gas inlet temperature to the combustor. The model is built in Excel and is extended to a capital expenditure overview based on new or a retrofitting in existing plants.
机译:本文的目的是展示紧凑型热交换器技术如何通过用于燃料气体加热来提供新的和现有的燃气轮机装置的节能和循环效率改进。在简要介绍高温紧凑型热交换器技术和传统设备的比较之后,使用了组合循环燃气轮机(CCGT)的热力学循环分析,展示了常规技术紧凑的技术的优点,分析燃气加热,以说明整体节省。案例研究用于证明净LHV电效率的增加在0.5至1.17%的范围内,在燃料气体加热中可以实现高效的紧凑型扩散粘合的热交换器可实现。考虑中间压力和高压进料水加热,用于将燃料气体入口温度增加到燃烧器中。该模型建于Excel,并根据现有植物的新建或改装来扩展到资本支出概述。

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