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Exergoeconomic performance optimization for an endoreversible regenerative gas turbine closed-cycle cogeneration plant

机译:内可逆式燃气轮机闭式循环热电联产厂的能效经济性能优化

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Finite time exergoeconomic performance of an endoreversible regenerative gas turbine closed-cycle cogeneration plant coupled to constant temperature heat reservoirs is investigated. The analytical formulae about profit rate and exergy efficiency of the cogeneration plant with the heat resistance losses in the hot-, cold- and consumer-side heat exchangers and the regenerator are deduced, respectively. By means of numerical calculations, the heat conductance allocation among the four heat exchangers and pressure ratio of the compressor are optimized by taking the maximum profit rate as the objective. The characteristic of optimal dimensionless profit rate versus corresponding exergy efficiency is investigated and the effects of design parameters on optimal performance of the cogeneration plant are also analyzed. The results show that there exist a sole group of optimal heat conductance allocations among the four heat exchangers and an optimal pressure ratio of the compressor which lead to the maximum dimensionless profit rate, and there exists an optimal consumer-side temperature which leads to double-maximum dimensionless profit rate.
机译:研究了与恒温储热器耦合的可逆可再生燃气轮机闭式循环热电联产厂的有限时间能效性能。推导了热电联产厂,热电联产厂和热电联产厂的热效率,冷量和用户侧换热器的热效率和热效率损失的解析公式。通过数值计算,以最大收益率为目标,优化了四个换热器之间的热传导分配和压缩机的压力比。研究了最佳无量纲利润率与相应的火用效率之间的关系,并分析了设计参数对热电联产电厂最佳性能的影响。结果表明,在四个热交换器之间存在唯一的最佳热传导分配组,并且压缩机的最佳压力比导致最大的无量纲收益率,而存在的最佳用户端温度导致双倍热效率。最大无量纲利润率。

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