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首页> 外文期刊>Physica, B. Condensed Matter >Influence of irreversible losses on the performance of a two-stage magnetic Brayton refrigeration cycle
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Influence of irreversible losses on the performance of a two-stage magnetic Brayton refrigeration cycle

机译:不可逆损耗对两阶段磁布雷顿制冷循环性能的影响

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摘要

The general performance characteristics of a two-stage magnetic Brayton refrigeration cycle consisting of three constant magnetic fields and three irreversible adiabatic processes are investigated. Based on the thermodynamic properties of a magnetic material and the irreversible cycle model of a two-stage Brayton refrigerator, expressions for the cooling load and coefficient of performance of the refrigeration system are derived The influence of the finite-rate heat transfer in the heat exchange processes, irreversibilities in the three adiabatic processes, ratios of two magnetic fields in the three constant magnetic field processes, and heat leak losses between two heat reservoirs on the performance of the two-stage magnetic Brayton refrigeration cycle are analyzed in detail. Some important performance curves, which can reveal the general characteristics of the refrigeration system, are presented and the maximum values of cooling load and coefficient of performance are numerically calculated The optimal choices and matches of other parameters at the maximum cooling load or the maximum coefficient of performance are discussed and the optimally operating regions of some important parameters ill the refrigeration system are determined. The results obtained here are compared with those derived from other models of the magnetic Brayton refrigeration cycles, and consequently, the advantage of an inter-cooled process is expounded .
机译:研究了由三个恒定磁场和三个不可逆绝热过程组成的两阶段布雷顿磁致冷循环的一般性能特征。根据磁性材料的热力学性质和两级布雷顿制冷机的不可逆循环模型,得出制冷系统的制冷负荷和性能系数的表达式。有限速率传热在热交换中的影响详细分析了三个绝热过程的不可逆性,三个恒定磁场过程中两个磁场的比率以及两个储热器之间的热泄漏损失对两阶段布雷顿磁制冷循环性能的影响。给出了一些重要的性能曲线,可以揭示制冷系统的一般特性,并通过数值计算出冷却负荷的最大值和性能系数。在最大冷却负荷或最大系数的情况下其他参数的最佳选择和匹配。讨论了制冷机的性能,并确定了制冷系统中一些重要参数的最佳运行区域。将此处获得的结果与从磁布雷顿制冷循环的其他模型得出的结果进行比较,因此,阐述了中间冷却过程的优势。

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