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Designing Efficient Commuter Vehicle using Finite Element Analysis And Computational Fluid Dynamics

机译:利用有限元分析和计算流体力学设计高效通勤车

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This paper attempts to give an efficient designing approach for an affordable, environment friendly human powered vehicle that serves the purpose of exercising along with being a commuter vehicle using finite element analysis. The proposed design is an aerodynamically enclosed trike which makes it more efficient and less drag prone than a regular bicycle. Along with pedaling power it is assisted by an electric motor, powered by a rechargeable battery. The frame is designed using commercially available software and its structural rigidity is ensured using finite element analysis. The individual components are designed sequentially and combined to create the complete assembly. Later, electric motor calculations are also carried out to estimate power required for driving the vehicle. Coefficient of drag is calculated, using 2-D computational fluid dynamics techniques (CFD), for both faired and un-faired configurations of trike and then values are compared. Furthermore, total drag force is determined for the faired trike in a high wind simulation. Calculations are then carried out to ensure that the recommended motor is sufficiently powered to propel the vehicle even in adverse high wind conditions. The experimental results demonstrate the effectiveness of the design
机译:本文试图提供一种有效的设计方法,以一种经济实惠的,环境友好的人力车,该车既要行使目的,又要通过有限元分析成为通勤车。拟议的设计是一种空气动力学封闭的三轮车,与普通自行车相比,它效率更高,阻力更小。除踏板动力外,它还由电动马达辅助,由可充电电池供电。框架使用市售软件进行设计,并通过有限元分析确保其结构刚度。各个组件按顺序设计并组合在一起以创建完整的组件。之后,还进行电动机计算以估算驱动车辆所需的功率。使用2-D计算流体动力学技术(CFD)计算三轮车的合理和不合理配置的阻力系数,然后将其值进行比较。此外,在高风模拟中确定了整流罩三轮车的总阻力。然后进行计算以确保即使在不利的大风条件下,推荐的电动机也具有足够的动力来推动车辆行驶。实验结果证明了设计的有效性

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