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首页> 外文期刊>International Journal of Refrigeration >Numerical simulation and its verification for an active magnetic regenerator
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Numerical simulation and its verification for an active magnetic regenerator

机译:主动式磁蓄冷器的数值模拟及其验证

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In this study, a one-dimensional model for the active magnetic regenerator (AMR) is established and verified by comparison with the experimental results. Besides four basic governing equations concerning mass and momentum conservation of heat transfer fluid and energy conservation of fluid and magnetic refrigerant, energy conservation of the regenerator wall is considered to achieve high accuracy and generalization. For the verification, a room temperature AMR has been fabricated with Gd and Halbach array. The AMR is operated by helium compressor with a rotary valve so that the effect of gas-compression/expansion also exists. Instantaneous mass flow rate and temperature distributions are measured during the experiment. Measured values are utilized as the boundary conditions and compared with the simulation results. Instead of cooling capacity or COP, simulation results are directly compared with the experimental results by temperature distribution in the AMR. The model and simulation results predict temperature distribution of the AMR properly at cyclic steady-state.
机译:在这项研究中,建立了主动磁蓄热器(AMR)的一维模型,并与实验结果进行了比较。除了关于传热流体的质量和动量守恒以及流体和磁性制冷剂的能量守恒的四个基本控制方程式之外,还考虑了蓄热器壁的能量守恒以实现高精度和通用化。为了验证,已使用Gd和Halbach阵列制作了室温AMR。 AMR由带有旋转阀的氦气压缩机操作,因此也存在气体压缩/膨胀的效果。在实验过程中测量瞬时质量流量和温度分布。测量值用作边界条件,并与仿真结果进行比较。代替制冷量或COP,通过AMR中的温度分布将模拟结果与实验结果直接进行比较。该模型和仿真结果可正确预测AMR在循环稳态下的温度分布。

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