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An efficient numerical scheme for the simulation of parallel-plate active magnetic regenerators

机译:一种有效的数值方案模拟平行板有源磁再生器

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摘要

A one-dimensional model of a parallel-plate active magnetic regenerator (AMR) is presented in this work. The model is based on an efficient numerical scheme which has been developed after analysing the heat transfer mechanisms in the regenerator bed. The new finite difference scheme optimally combines explicit and implicit techniques in order to solve the one-dimensional conjugate heat transfer problem in an accurate and fast manner while ensuring energy conservation. The present model has been thoroughly validated against passive regenerator cases with an analytical solution. Compared to the fully implicit scheme, the proposed scheme achieves more accurate results, prevents numerical errors and requires less computational effort. In AMR simulations the new scheme can reduce the computational time by 88%.
机译:这项工作提出了平行板式主动磁蓄热器(AMR)的一维模型。该模型基于有效的数值方案,该方案是在分析蓄热床中的传热机理后开发的。新的有限差分方案最佳地结合了显式和隐式技术,以在确保节能的同时准确,快速地解决一维共轭传热问题。本模型已通过分析解决方案针对被动式再生器案例进行了全面验证。与完全隐式方案相比,该方案可实现更准确的结果,防止数值错误并需要较少的计算量。在AMR仿真中,新方案可以将计算时间减少88%。

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