Numerical Simulation of Effect of Inclination Angle on Heat Storage Properties of Phase Change Paraffin

F. Hou, Jingying Qu, Zhengbing Bian, Hong Wang, Yang Bai
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Abstract

In order to explore the heat storage properties of phase change paraffin, a calculation model for melting heat storage of phase change paraffin was established based on the equivalent heat capacity method. A finite element software (COMSOL) was used to study the influence of different inclination angles on heat storage properties of phase change paraffin. The results show that the melting process of phase change paraffin is determined by heat conduction and natural convection heat transfer, natural convection heat transfer plays a significant role in the process of heat storage in phase change paraffin. Phase change paraffin exhibits distinct melting heat storage efficiency under different inclination angles. When changes from -90° to 90°, the melting time of paraffin decreases gradually. When , the melting time of paraffin is the slowest, when , the melting time of paraffin is the fastest, and the melting speed of paraffin is increased by about 8.6 times.
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倾斜角度对相变石蜡储热性能影响的数值模拟
为了探究相变石蜡的储热性能,基于等效热容法建立了相变石蜡熔融储热计算模型。采用COMSOL有限元软件研究了不同倾角对相变石蜡储热性能的影响。结果表明:相变石蜡的熔融过程是由热传导和自然对流换热共同决定的,自然对流换热在相变石蜡储热过程中起着重要作用。相变石蜡在不同的倾斜角度下表现出不同的熔融蓄热效率。从-90°变化到90°时,石蜡的熔化时间逐渐缩短。时,石蜡的熔化时间最慢,时,石蜡的熔化时间最快,石蜡的熔化速度提高了约8.6倍。
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