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Ecological optimization and parametric study of irreversible Stirling and Ericsson heat pumps

机译:不可逆斯特林和爱立信热泵的生态优化和参数研究

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摘要

This communication presents the ecological optimization and parametric study of irreversible Stirling and Ericsson heat pump cycles, in which the external irreversibility is due to finite temperature difference between working fluid and external reservoirs while the internal irreversibilities are due to regenerative heat loss and other entropy generations within the cycle. The ecological function is defined as the heating load minus the irreversibility (power loss) which is ambient temperature times the entropy generation. The ecological function is optimized with respect to working fluid temperatures, and the expressions for various parameters at the optimal operating condition are obtained. The effects of different operating parameters on the performance of these cycles have been studied. It is found that the effect of internal irreversibility parameter is more pronounced than the other parameters on the performance of these cycles. [References: 28]
机译:该通讯介绍了不可逆斯特林和爱立信热泵循环的生态优化和参数研究,其中外部不可逆性是由于工作流体和外部储层之间的有限温差而内部不可逆性是由于再生热损失和内部的其他熵产生周期。生态功能定义为加热负荷减去不可逆性(功率损失),不可逆性是环境温度乘以熵产生。就工作流体温度优化了生态功能,并获得了在最佳工作条件下各种参数的表达式。已经研究了不同操作参数对这些循环性能的影响。发现内部不可逆性参数对这些循环的性能比其他参数更为明显。 [参考:28]

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