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Refrigeration Performance and Entropy Generation Analysis for Reciprocating Magnetic Refrigerator with Gd Plates

机译:用GD板往复磁冰箱的制冷性能和熵生成分析

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摘要

In the current work, a novel 2D numerical model of stationary grids was developed for reciprocating magnetic refrigerators, with Gd plates, in which the magneto-caloric properties, derived from the Weiss molecular field theory, were adopted for the built-in energy source of the magneto-caloric effect. The numerical simulation was conducted under the conditions of different structural and operational parameters, and the effects of the relative fluid displacement (φ) on the specific refrigeration capacity (qref) and the Coefficient of Performance (COP) were obtained. Besides the variations of entropy, the generation rate and number were studied and the contours of the local entropy generation rate are presented for discussion. From the current work, it is found that with an increase in φ, both the qref and COP followed the convex variation trend, while the entropy generation number (Ns) varied concavely. As for the current cases, the maximal qref and COP were equal to 151.2 kW/m3 and 9.11, respectively, while the lowest Ns was the value of 2.4 × 10−4 K−1. However, the optimal φ for the largest qref and COP, and for the lowest Ns, were inconsistent, thus, some compromises need be made in the optimization of magnetic refrigerators.
机译:在当前的工作中,开发了一种新的静止网格数值模型,用于往复式磁冰箱,Gd板,其中源自韦斯分子领域的磁热性能被采用了内置的能源来源磁热效应。在不同结构和操作参数的条件下进行数值模拟,获得了在特定制冷能力(QREF)上的相对流体位移(φ)的影响和性能系数(COP)。除了熵的变化之外,研究了生成率和数量,并提出了局部熵产生率的轮廓进行讨论。从当前的工作来看,发现随着φ的增加,QREF和COP都遵循凸变化趋势,而熵产生数量(NS)凹凸不平。至于当前病例,最大QREF和COP分别等于151.2 kW / m3和9.11,而最低Ns的值为2.4×10-4 k-1。然而,最大QREF和COP的最佳φ和最低NS是不一致的,因此,需要在磁冰箱的优化中进行一些妥协。

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