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Heating load and COP optimizations for a class of generalized irreversible universal steady-flow variable-temperature heat reservoir heat pump cycle model

机译:一类广义不可逆通用恒流变温热库热泵循环模型的热负荷和COP优化

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The heating load and coefficient of performance (COP) of a class of generalized irreversible universal steady-flow heat pump cycle model with variable-temperature heat reservoirs and the losses of heat transfer, heat leakage and internal irreversibility are investigated by using the theory of finite-time thermodynamics. The universal heat pump cycle model consists of two heat-absorbing branches, two heat-releasing branches and two adiabatic branches. Expressions of heating load and COP of the universal heat pump cycle model are deduced, respectively. By means of numerical calculations, the heat conductance distributions between hot- and cold-side heat exchangers are optimized by taking the maximum heating load as objective. There exist both optimal heat conductance distributions and optimal thermal capacity rate matching between the working fluid and heat reservoirs which lead to the double maximum heating load. The effects of heat leakage, internal irreversibility, total heat exchanger inventory and thermal capacity rate of the working fluid on the optimal performance of the cycle are discussed in detail. The results obtained herein include the optimal performance of endoreversible and irreversible, constant- and variable-temperature heat reservoir Brayton, Otto, Diesel, Atkinson, Dual, Miller and Carnot heat pump cycles. The results obtained can provide some theoretical guidelines for the designs and operations of practical heat pumps.
机译:利用有限理论研究了一类具有可变温度储热器的广义不可逆通用恒流热泵循环模型的热负荷和性能系数,以及热传递,热泄漏和内部不可逆性的损失。时间热力学。通用热泵循环模型由两个吸热分支,两个放热分支和两个绝热分支组成。分别推导了通用热泵循环模型的热负荷和COP表达式。通过数值计算,以最大供热负荷为目标,优化了热侧和​​冷侧热交换器之间的热导分布。在工作流体和储热器之间既存在最佳的热导分布,又存在最佳的热容量比匹配,从而导致最大热负荷翻倍。详细讨论了热泄漏,内部不可逆性,总热交换器存量和工作流体的热容量速率对循环最佳性能的影响。本文获得的结果包括内可逆和不可逆,恒温和可变温度储热器的最佳性能,包括布雷顿,奥托,柴油,阿特金森,双重,米勒和卡诺热泵循环。获得的结果可以为实际热泵的设计和运行提供一些理论指导。

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