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The exergy and energy level difference graphic analysis of a CCHP system under compressor inlet air throttling (IAT) operating strategy

机译:压缩机入口空气节流(IAT)操作策略下CCHP系统的电力和能量水平差异图分析

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The part-load performance of combined cooling, heating and power (CCHP) system based on exergy and energy level graphic analysis under compressor inlet air throttling (IAT) operating strategy is presented in this paper. The results show that the combustor (COMB) is found to have the largest exergy destruction followed by high-pressure generator (HPG). Compared with the reducing turbine inlet temperature (TIT) operating strategy, the exergy destruction of COMB is decreased under IAT operating strategy; however, the opposite result is presented in HPG. A new graphic analysis based on energy level difference is proposed to indicate the potential to enhance the thermodynamics performance of the components under different operating strategies. The decrease of the energy level difference in the COMB and HPG is a most positive way to decrease the exergy destruction with IAT and TIT operation strategies.
机译:本文提出了基于压缩机入口空气节流(IAT)操作策略的基于Deergy和能级图形分析的基于Deergy和能量水平图形分析的组合冷却,加热和功率(CCHP)系统的部分负荷性能。结果表明,燃烧器(梳子)被发现具有最大的暴力破坏,然后具有高压发生器(HPG)。与减少汽轮机入口温度(山雀)操作策略相比,根据IAT操作策略下降了梳理的遭受毁灭;但是,相反的结果以HPG呈现。提出了一种基于能量水平差异的新图形分析,表示在不同的操作策略下提高组件的热力学性能的可能性。梳子和HPG的能量水平差异的减少是最积极的方法,可以减少与IAT和山雀操作策略的漏洞破坏。

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