Computational Fluid Dynamic Analysis of Enhancing Passenger Cabin Comfort Using PCM

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Abstract

The main purpose of this study is to determine a cost effective way to enhance passenger cabin comfort by analyzing the effect of solar radiation of a open parked vehicle, which is exposed to constant solar radiation on a hot and sunny day. Maximum heat accumulation occurs in the car cabin due to the solar radiation. By means of computational fluid dynamics (CFD) analysis, a simulation process is conducted for the thermal regulation of the passenger cabin using a layer of phase change material (PCM) on the roof structure of a stationary car when exposed to ambient temperature on a hot sunny day. The heat energy accumulated in the passenger cabin is absorbed by a layer of PCM for phase change process. The installation of a ventilation system which uses an exhaust fan to create a natural convection scenario in the cabin is also considered to enhance passenger comfort along with PCM.

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Purusothaman, M., Valarmathi, T. N., & Dada Mohammad, S. K. (2016). Computational Fluid Dynamic Analysis of Enhancing Passenger Cabin Comfort Using PCM. In IOP Conference Series: Materials Science and Engineering (Vol. 149). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/149/1/012197

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