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首页> 外文期刊>Energies >Transient Numerical Simulation of the Melting and Solidification Behavior of NaNO 3 Using a Wire Matrix for Enhancing the Heat Transfer
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Transient Numerical Simulation of the Melting and Solidification Behavior of NaNO 3 Using a Wire Matrix for Enhancing the Heat Transfer

机译:利用线矩阵增强传热的NaNO 3熔体和凝固行为的瞬态数值模拟

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摘要

The paper presents the results of a transient numerical investigation of the melting and solidification process of sodium nitrate (NaNO 3 ), which is used as phase change material. For enhancing the heat transfer to the sodium nitrate an aluminum wire matrix is used. The numerical simulation of the melting and solidification process was done with the enthalpy-porosity approach. The numerical analysis of the melting process has shown that apart from the first period of the charging process, where heat conduction is the main heat transfer mechanism, natural convection is the dominant heat transfer mechanism. The numerical investigation of the solidification process has shown that the dominant heat transfer mechanism is heat conduction. Based on the numerical results, the discharging process has been slower than the charging process. The performance of the charged and discharged power has shown that the wire matrix is an alternative method to enhance the heat transfer into the phase change material.
机译:本文介绍了用作相变材料的硝酸钠(NaNO 3)的熔融和凝固过程的瞬态数值研究结果。为了增强向硝酸钠的热传递,使用铝线基质。用焓-孔隙率方法进行了熔化和凝固过程的数值模拟。熔化过程的数值分析表明,除了装料过程的第一阶段,传热是主要的传热机制,自然对流是主要的传热机制。凝固过程的数值研究表明,主要的传热机理是热传导。根据数值结果,放电过程比充电过程要慢。充电和放电功率的性能表明,导线矩阵是增强向相变材料中传热的替代方法。

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