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Thermodynamics of active magnetic regenerators: Part II

机译:有源磁蓄热器的热力学:第二部分

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Governing equations for the thermodynamics of an active magnetic regenerator (AMR) are used to analyze the performance of simplified cycles operating with idealized magnetocaloric material. An idealized material with a magnetocaloric effect that varies linearly with temperature is assumed. Results are presented for cases where balance and symmetry are equal to one (β≡δ≡1) and the refrigerant specific heat is constant. Under these conditions, the temperature distribution, cooling power, work rate, and efficiency are determined for various values of entrained fluid thermal mass (R). A set of sample results are presented for each case as a function of utilization, temperature span, and conductance. Results from the simplified thermodynamic theory are briefly compared to experimental results from the literature.
机译:有源磁蓄热器(AMR)的热力学控制方程用于分析使用理想磁热材料运行的简化循环的性能。假定具有磁热效应并随温度线性变化的理想材料。给出了平衡和对称性等于1(β≡δ≡1)且制冷剂比热恒定的情况的结果。在这些条件下,对于夹带流体热质量(R)的各种值,确定温度分布,冷却功率,工作速率和效率。根据利用率,温度跨度和电导率,给出了每种情况下的一组样本结果。将简化的热力学理论的结果与文献中的实验结果进行了简要比较。

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