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Lattice Boltzmann simulation of convection melting in complex heat storage systems filled with phase change materials

机译:充满相变材料的复杂储热系统中对流熔融的莱迪思·玻尔兹曼模拟

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In the present study, a double-population lattice Boltzmann method is applied to the simulation of convection-diffusion phenomena associated with solid-liquid phase transition processes. The research focus is the advancement of the lattice Boltzmann method to complex multitube heat storage system with different numbers and arrangements of tubes. Firstly, a systematic comparison of different lattice Boltzmann models for thermal and flow field in the phase change process is numerically conducted in a square cavity, and the numerical results are validated by the literature data. Then, a comprehensive analysis has been performed in order to investigate the influence of various numbers and arrangements of tubes on the melting dynamics of shell and tube models with different Rayleigh and Stefan numbers. The computational results show how the transient phase-change process, expressed in terms of the volume melt fraction of phase change materials (PCM), depends on the thermal and geometrical parameters of the system. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本研究中,将双种群格子Boltzmann方法应用于与固液相转变过程相关的对流扩散现象的模拟。研究重点是将格子玻尔兹曼方法推广到具有不同管数和布置的复杂多管蓄热系统。首先,在方腔内对相变过程中不同的格子Boltzmann模型的热流场和流场进行了系统的比较,并通过文献数据对数值结果进行了验证。然后,进行了全面的分析,以研究不同数量和排列的管对具有不同瑞利数和斯特凡数的壳和管模型的熔化动力学的影响。计算结果表明,以相变材料(PCM)的体积熔体分数表示的瞬态相变过程如何取决于系统的热学和几何参数。 (C)2015 Elsevier Ltd.保留所有权利。

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