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Impact of Wheel-Housing on Aerodynamic Drag and Effect on Energy Consumption on an Electric Bus Body

机译:轮壳对电动总线能耗的影响对空气动力阻力和对能耗的影响

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Role of wheel and underbody aerodynamics of vehicle in the formation of drag forces is detrimental to the fuel (energy) consumption during the course of operation at high velocities. This paper deals with the CFD simulation of the flow around the wheels of a bus with different wheel housing arrangements. Based on benchmarking, a model of a bus is selected and analysis is performed. The aerodynamic drag coefficient is obtained and turbulence around wheels is observed using ANSYS Fluent CFD simulation for different combinations of wheel-housing- at the front wheels, at the rear wheels and both in the front and rear wheels. The drag force is recorded and corresponding influence on energy consumption of a bus is evaluated mathematically. A comparison is drawn between energy consumption of bus body without wheel housing and bus body with wheel housing. The result shows a significant reduction in drag coefficient and fuel consumption.
机译:车轮和底部的作用在驾驶力的形成中的车辆的空气动力学是对高速运行过程中的燃料(能量)消耗是有害的。本文涉及具有不同轮式壳体布置的总线车轮周围的CFD模拟。基于基准测试,选择了总线的模型并进行分析。使用ANSYS流畅的CFD模拟在前轮的不同组合,在前轮和后轮上的前轮处和后轮上的不同组合来观察到气动阻力系数,并且在前轮处的不同组合观察轮子周围的湍流。记录拖曳力,并在数地评估对公共汽车的能量消耗的相应影响。在没有车轮壳体和带轮壳的总线主体的公交车体的能量消耗之间绘制了比较。结果显示拖动系数和燃料消耗的显着降低。

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