Research Article A Parametric Study to Improve the Heat Transfer of Solar Air Heater Through CFD Analysis

Emarti Kumari
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Abstract

In this article, we optimize the performance of a solar air heater (SAH) using two designs and computational fluid dynamics (CFD) analysis in this article. With the help of ANSYS fluent, two designs are considered to investigate the effect of different rib heights (e = 1, 1.2, 1.4, 1.6, and 1.8) and duct depths (h = 16, 18, 20, 22, and 24). The effects of different parameters such as velocity, temperature, turbulence kinetic energy, and turbulence energy are compared to optimize the performance of designs 2 and 3. It is noticed that except temperature, all other parameters are on the lower side for design 2 as compared to design 3, due to improper air mixing in design 2. The authors presented the optimized design 3 with rib height e = 1.8 and depth of duct h = 16 after consideration of all the parameters (temperature, velocity, turbulence kinetic energy, and turbulence intensity) at various rib heights and depths of the duct. These numerical results will serve as a benchmark for future research to improve the efficacy of solar air heaters.
通过CFD分析对提高太阳能空气加热器传热性能的参数化研究
在本文中,我们采用两种设计和计算流体动力学(CFD)分析来优化太阳能空气加热器(SAH)的性能。在ANSYS fluent软件的帮助下,考虑两种设计,研究不同肋高(e = 1、1.2、1.4、1.6、1.8)和风管深度(h = 16、18、20、22、24)对两种设计的影响。比较了速度、温度、湍流动能和湍流能量等不同参数对设计2和设计3性能的影响。可以注意到,由于设计2中空气混合不当,设计2除温度外,其他参数均较设计3偏下。综合考虑不同肋高和深度的温度、速度、湍流动能、湍流强度等参数,提出肋高e = 1.8,风管深度h = 16的优化设计3。这些数值结果将为今后提高太阳能空气加热器效率的研究提供参考。
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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