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A new perspective of thermoeconomic analysis on a gas-steam combined cycle power plant

机译:气体蒸汽联合循环发电厂热经济分析的新视角

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In this study, we have applied the H&S model to a gas-steam combined cycle power plant (CCPP) and further explore its advantages for thermoeconomic evaluation. We introduce how E&S model irrationally assesses the performance of both productive and dissipative components from the viewpoint of fuel-product model. Then, we build the thermoeconomic model of a typical gas-steam CCPP based on H&S theory and show the potential of improvement for each component. For a CCPP, the results indicate that reducing non-energy cost of the steam turbine (ST) and the irreversibility of the combustion chamber (CC) can significantly lower the thermoeconomic cost of electrical power. For the condenser (CND) and stack (STA), the dissipative cost is responsible for the most of their thermoeconomic cost. It is concluded that thermoeconomic performance evaluation based H&S model gives a more reasonable result and can support the research on thermoeconomic optimisation.
机译:在这项研究中,我们将H&S模型应用于气体蒸汽联合循环发电厂(CCPP),并进一步探索其热经济评估的优点。我们介绍了E&S模型如何从燃料 - 产品模型的观点来看,E&S模型如何评估生产性和耗散组分的性能。然后,我们基于H&S理论构建典型气体CCPP的热经济模型,并显示每个组分的改进潜力。对于CCPP,结果表明减少汽轮机(ST)的非能量成本和燃烧室(CC)的不可逆性,可以显着降低电力的热量经济成本。对于冷凝器(CND)和堆叠(STA),耗散成本对于其最大的热经济成本负责。得出结论,基于热经济性能评估的H&S模型提供了更合理的结果,可以支持热经济优化研究。

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