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Performance optimisation for two classes of combined regenerative Brayton and inverse Brayton cycles

机译:两类再生布雷顿循环和逆布雷顿循环组合的性能优化

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This paper proposes a new cyclic model of combined regenerative Brayton and inverse Brayton cycles. The new combined regenerative Brayton and inverse Brayton cycles recover heat energy after the working fluid leaves the turbine of the inverse Brayton cycle while the original combined regenerative Brayton and inverse Brayton cycles recover heat energy before the working fluid enters the turbine of the inverse Brayton cycle. Performance analysis and optimisation of the two classes combined cycles are carried out. Furthermore, the effect of the regenerator on the performance of the two combined cycles is analysed. It is found that the new combined cycle can obtain higher thermal efficiency and larger specific work than those of the original combined cycle at low compressor pressure ratio of the top cycle, and the regenerator can improve the performance of both the combined cycles. By theoretical analysis of this paper, it reveals that the new combined cycle will be well applied in the prospect, and the original combined cycle will be suited to low power output equipments. This paper aims at enriching the gas turbine theory and providing a possible way to save energy.
机译:本文提出了一个新的再生布雷顿循环和逆布雷顿循环组合的循环模型。在工作流体离开逆布雷顿循环的涡轮机之后,新的组合式布雷顿逆循环和逆布雷顿循环恢复了热能,而原始布雷顿逆循环和布雷顿逆循环组合在工作流体进入布雷顿逆向涡轮之前恢复了热能。进行了两类联合循环的性能分析和优化。此外,分析了再生器对两个联合循环的性能的影响。发现在顶部循环的低压缩机压力比下,新的联合循环可以获得比原始联合循环更高的热效率和更大的比功,并且再生器可以改善两个联合循环的性能。通过本文的理论分析,表明新的联合循环将在前景中得到很好的应用,而原始的联合循环将适用于低功率输出设备。本文旨在丰富燃气轮机理论,并提供一种节约能源的方法。

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