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Mathematical modeling and numerical simulation of a short term thermal energy storage system using phase change material for heating applications

机译:使用相变材料的短期热能存储系统在加热应用中的数学建模和数值模拟

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The main objective of this paper is to analyze the heat and mass transfer in a ventilation duct filled with encapsulated paraffin wax RII-56. A mathematical model and its numerical solution are presented. A new approach for approximating the specific heat of the PCM as a function of its temperature is proposed for all range of operating conditions. The interpolating cubic spline function method is used for determining an effective specific heat in each time step of temperature calculations. Equations for three-dimensional transient thermal analysis with associated boundary and initial conditions are solved by the control volume finite difference method with the fully implicit scheme. Proper trends and a good agreement between the results of theoretical modeling and physical reality for the solidification/melting process are obtained. Finally, 24 h operation of the proposed short term latent heat storage system is analyzed and the influence of the PCM capsules geometry on the thermal performance of the tested storage module is shown.
机译:本文的主要目的是分析装有密闭石蜡RII-56的通风管道中的传热和传质。提出了数学模型及其数值解。对于所有工作条件范围,都提出了一种新方法来近似估算PCM的比热随温度变化的函数。内插三次样条函数法用于确定温度计算的每个时间步中的有效比热。通过具有完全隐式格式的控制体积有限差分法,可以求解具有相关边界和初始条件的三维瞬态热分析方程。在凝固/熔融过程的理论模型结果和物理现实之间获得了正确的趋势并取得了良好的一致性。最后,分析了所建议的短期潜热存储系统24小时的运行情况,并显示了PCM胶囊几何形状对所测试的存储模块的热性能的影响。

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