Melting and Thermal Behavior of Phase Change Materials Around an Asymmetrically Confined Circular Cylinder

M. Azim, Anoop K. Gupta
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Abstract

Due to increasing energy demand caused by growing civilization and human comfort on one hand, and the limited presence of conventional energy resources such as fossil fuels on the other hand, the use of phase change materials (PCM) in thermal energy storage (TES) systems has significantly increased. Typical applications are in building walls, glass windows, heat and cold storage units, textiles, cooling helmets, batteries, solar water heating system, HVAC units, etc. These materials store and release a bulk amount of latent heat during phase change process. Moreover, such materials are more economical and eco-friendly in use. However, the design and optimization of a system utilizing PCM is challenging. The objective of this work is to design and investigate a system yielding high rate of heat transfer to ensure lesser melting time required to achieve thermostat condition. In this work, the effect of asymmetric positioning of a heated circular cylinder on melt fraction, energy storage and temperature profiles is studied numerically for the Lauric acid as PCM (melting temp ~ 319K, Rayleigh number ~ 20,000, Prandtl number ~ 140) confined in a square duct. The simulations have been carried out using ANSYS Fluent 19.2. We considered five different positions/locations of the cylindrical object. It is found that a simple modulation in the location of the heated object, it is possible to tune the rate of heat transfer and thus the performance of TES devices.
相变材料在非对称受限圆柱体周围的熔化和热行为
一方面,由于人类文明的发展和人类舒适度的提高导致能源需求的增加,另一方面,化石燃料等传统能源资源的有限存在,相变材料(PCM)在热能储存(TES)系统中的使用显著增加。典型的应用是建筑墙壁,玻璃窗,冷热储存装置,纺织品,冷却头盔,电池,太阳能热水系统,暖通空调机组等。这些材料在相变过程中储存和释放大量的潜热。此外,这种材料在使用中更加经济和环保。然而,利用PCM系统的设计和优化是具有挑战性的。这项工作的目的是设计和研究一个系统产生高传热率,以确保较少的熔化时间,以达到恒温条件。本文对月桂酸作为PCM(熔化温度~ 319K,瑞利数~ 20000,普朗特数~ 140)密闭在方形管道中的加热圆柱不对称位置对熔体分数、能量储存和温度分布的影响进行了数值研究。仿真采用ANSYS Fluent 19.2软件进行。我们考虑了圆柱形物体的五个不同位置。研究发现,在被加热物体的位置进行简单的调制,就有可能调整传热速率,从而提高TES器件的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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