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Vehicle aerodynamic simulation analysis and research on bumpy road

机译:颠簸道路的车辆空气动力学模拟分析与研究

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Purpose - In order to certify the testing of vehicle Cd on the real road can be replaced by the much simplified steady-state simulation process inside wind tunnel. Design/methodology/approach - The paper opted innovative methods to verify the feasibility of using aerodynamic wind tunnel test for vehicle development purpose, including establishing the typical sinusoidal mapping function for road shapes during vehicle driving process to simplify the complexity of the road and choosing three different kinds of road spectrum amplitudes to establish the vehicle motion model, which can accurately predict the vehicle motion characteristics in the road driving process. The new approach simulates the vehicle aerodynamics on the road by taking into account the pitch angle changes during vehicle motion. Findings - By comparing the transient drag coefficient on road with the steady-state simulated value in the conventional aerodynamic wind tunnel. This paper provides empirical insights about the flow field analysis around the vehicle on road that can verify the feasibility of using aerodynamic wind tunnel test for vehicle development purpose. Research limitations/implications - Because of establishing the typical sinusoidal mapping function for road shapes, the study results may lack generalizability. Therefore, researchers are encouraged to test the proposed propositions further. Practical implications - This paper includes implications for the flow field analysis around the vehicle on road that can verify the feasibility of using aerodynamic wind tunnel test for vehicle development purpose. Originality/value - This paper fulfills an identified need to use aerodynamic wind tunnel test for vehicle development purpose.
机译:目的 - 为了认证在真正的道路上的车辆CD的测试可以通过风洞内的大量简化稳态仿真过程所取代。设计/方法/方法 - 本文选择了创新方法,验证了使用空气动力风洞测试的车辆开发目的的可行性,包括在车辆行驶过程中建立道路形状的典型正弦映射功能,以简化道路的复杂性和选择三个不同种类的道路频谱振动建立车辆运动模型,可以准确地预测道路行驶过程中的车辆运动特性。新方法通过考虑在车辆运动期间的俯仰角变化来模拟道路上的车辆空气动力学。调查结果 - 通过将瞬态拖曳系数与传统空气动力风洞中的稳态模拟值进行比较。本文提供了对道路上车辆周围的流场分析的实证见解,可以验证使用用于车辆发展目的的空气动力风洞测试的可行性。研究限制/含义 - 由于建立道路形状的典型正弦映射功能,研究结果可能缺乏普遍性。因此,鼓励研究人员进一步测试拟议的命题。实际意义 - 本文包括对道路上的车辆周围的流场分析的影响,可以验证使用用于车辆发展目的的空气动力风洞测试的可行性。原创性/值 - 本文符合使用用于车辆发展目的的空气动力风洞测试的确定需要。

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