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首页> 外文期刊>International Journal of Refrigeration >A 2D hybrid model of the fluid flow and heat transfer in a reciprocating active magnetic regenerator
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A 2D hybrid model of the fluid flow and heat transfer in a reciprocating active magnetic regenerator

机译:往复式主动磁蓄热器中流体流动和传热的二维混合模型

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This paper evaluates the thermal behavior of a magnetic-Brayton-based parallel plate reciprocating active magnetic regenerator (AMR). A time-dependent, 2D model of the fluid flow and the coupled heat transfer between the working fluid and the solid refrigerant (gadolinium) is proposed. A hybrid calculation method which consists of an analytical solution for the flow and a numerical solution for the thermal field has been adopted. Results for the cooling capacity as a function of the temperature span and mass flow rate agree well with trends observed in experimental data and other theoretical models available in the literature. The volume of fluid displaced through the channels during the iso-field processes influences significantly the AMR performance. For a cycle frequency of 1 Hz, the cycle-averaged cooling capacity reaches a maximum when the utilization factor is 0.1 and the displaced fluid volume equals 62% of the fluid volume of the AMR.
机译:本文评估了基于磁布雷顿河的平行板往复式主动式磁蓄热器(AMR)的热性能。提出了一种时变的二维流体流动模型,以及工作流体和固体制冷剂(ga)之间的耦合传热模型。已经采用了一种混合计算方法,该方法包括对流动的解析解和对热场的数值解。作为温度跨度和质量流量的函数的冷却能力结果与在实验数据和文献中可获得的其他理论模型中观察到的趋势非常吻合。在等场过程中通过通道置换的流体量会显着影响AMR性能。对于1 Hz的循环频率,当利用率为0.1并且排出的流体量等于AMR的流体量的62%时,循环平均冷却能力达到最大值。

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