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Optimal criteria for different parameters of an irreversible regenerative intercooled Brayton cycle under maximum power and maximum ecological COP conditions

机译:最大功率和最大生态COP条件下不可逆再生中冷布雷顿循环不同参数的最佳标准

摘要

An irreversible regenerative intercooled Brayton cycle under maximum power output and maximum ecological coefficient of performance (ECOP, defined as the power output divided by the loss rate of availability) conditions is presented in this paper. The power output, thermal efficiency and ecological COP are optimised with respect to the cycle temperatures, intercooling and cycle pressure ratios for a given set of operating conditions. The maximum power output, maximum efficiency, and maximum ECOP, and their corresponding temperatures at different state points, as well as the cycle pressure ratio, are calculated for given values of the intercooling pressure ratio and other cycle parameters. It is found that there exist optimal values of turbine outlet temperature, intercooling and cycle pressure ratios at which these performance parameters (i.e. the power output, thermal efficiency and ECOP) attain their maximum values and the optimal values of these parameters are different for different performance parameters for the same set of operating conditions. It is also found that there exist optimal values of thermal efficiency and ECOP at which the optimised power output attains its maximum value but the power output corresponding to the maximum ECOP and maximum thermal efficiency is lower than the maximum that can be attained. The present cycle model is general and the results obtained by earlier workers are special cases of this cycle model.
机译:本文提出了在最大功率输出和最大生态性能系数(ECOP,定义为功率输出除以可用性损失率)条件下的不可逆蓄冷式布雷顿循环。对于给定的一组运行条件,在循环温度,中冷和循环压力比方面优化了功率输出,热效率和生态COP。对于中间冷却压力比和其他循环参数的给定值,将计算最大功率输出,最大效率和最大ECOP以及它们在不同状态点处的相应温度以及循环压力比。发现存在最佳的涡轮出口温度,中间冷却和循环压力比值,在这些条件下这些性能参数(即功率输出,热效率和ECOP)达到最大值,并且对于不同的性能,这些参数的最优值不同同一组操作条件的参数。还发现存在最佳效率的热效率和ECOP,最佳功率输出达到最大值,但是对应于最大ECOP和最大热效率的功率输出低于可以达到的最大值。当前的周期模型是通用的,早期工人获得的结果是该周期模型的特例。

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