Optimization of the Electric Vehicle HVAC Duct System Based on Gradient Method

Q3 Engineering
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引用次数: 6

Abstract

Our study describes the optimization of the part of heating, ventilation and air conditioning (HVAC) system of an electric car. The geometry of the air duct connected to the heater unit on one side and the dashboard on the other. From the point of view of aerodynamics, it is necessary to change the geometry of the air duct so as to minimize the loss of air pressure and ensure a more uniform flow from the exit holes to improve the efficiency of windshield heating. In order to optimize the initial geometry of the air duct, approach of using gradient methods was applied. According to the results of the study, detailed concept of optimizing the air duct of an electric car is presented. The optimized geometry was tested with the use of methods of computational aerodynamics. Calculations were made as part of the interior model of electric car with the output of temperature fields on the windshield. The results can be applied to the design of heating, ventilation and air conditioning systems of vehicles in a short time.
基于梯度法的电动汽车暖通空调管道系统优化
我们的研究描述了电动汽车供暖、通风和空调系统的优化。一侧连接到加热器单元,另一侧连接到仪表板的风道的几何结构。从空气动力学的角度来看,有必要改变风管的几何形状,以最大限度地减少空气压力的损失,并确保从出口孔流出的气流更加均匀,从而提高挡风玻璃加热的效率。为了优化风管的初始几何形状,采用了梯度法。根据研究结果,提出了电动汽车风道优化的详细概念。利用计算空气动力学方法对优化后的几何结构进行了测试。作为电动汽车内部模型的一部分,利用挡风玻璃上的温度场输出进行了计算。研究结果可在短时间内应用于汽车供暖、通风和空调系统的设计。
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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来源期刊
International Journal of Mechanics
International Journal of Mechanics Engineering-Computational Mechanics
CiteScore
1.60
自引率
0.00%
发文量
17
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