首页> 外文会议>ASME International Conference on Micro/Nanoscale Heat and Mass Transfer >THE LATTICE BOLTZMANN INVESTIGATION FOR THE MELTING PROCESS OF PHASE CHANGE MATERIAL IN AN INCLINING CAVITY
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THE LATTICE BOLTZMANN INVESTIGATION FOR THE MELTING PROCESS OF PHASE CHANGE MATERIAL IN AN INCLINING CAVITY

机译:晶格Boltzmann对倾斜腔中相变材料熔化过程的研究

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摘要

The solid-liquid phase transition process is of significant importance the widely usage of phase change material (PCM), including in thermal energy storage and maintaining working temperature. In this paper, a phase change lattice Boltzmann (LB) model has been established to investigate the effects of inclining angle on the melting process in a cavity filled with PCM, considering three kinds of heat flux distribution: uniform distribution, linear distribution and parabolic symmetry distribution. The simulations results show that for all the heat flux distributions, the slight clockwise rotation of cavity is able to accelerate the melting process. Furthermore, when more heat is transported into the cavity through the middle part (parabolic symmetry distribution) or bottom part (linear distribution), the effects of cavity clockwise rotation on temperature field are more than that of anticlockwise rotation.
机译:固液相转变过程具有重要意义,广泛使用相变材料(PCM),包括在热能储存和保持工作温度中。在本文中,已经建立了相变格Boltzmann(LB)模型来研究倾斜角度对填充PCM填充的熔点的影响,考虑到三种热通量分布:均匀的分布,线性分布和抛物面对称分配。模拟结果表明,对于所有热通量分布,腔的轻微顺时针旋转能够加速熔化过程。此外,当通过中间部分(抛物线对称分布)或底部(线性分布)将更多热量传送到腔中时,腔腔旋转在温度场上的效果大于逆时针旋转的效果。

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