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首页> 外文期刊>Journal of Aerodynamics >Drag Reduction of Passenger Car Using Add-On Devices
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Drag Reduction of Passenger Car Using Add-On Devices

机译:使用附加设备减少乘用车的阻力

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This work proposes an effective numerical model using the Computational Fluid Dynamics (CFD) to obtain the flow structure around a passenger car with different add-on devices. The computationalumerical model of the passenger car and mesh was constructed using ANSYS Fluent which is the CFD solver and employed in the present work. In this study, numerical iterations are completed, and then aerodynamic data and detailed complicated flow structure are visualized. In the present work, a model of generic passenger car was developed using solidworks, generated the wind tunnel, and applied the boundary conditions in ANSYS workbench platform, and then testing and simulation have been performed for the evaluation of drag coefficient for passenger car. In another case, the aerodynamics of the most suitable design of vortex generator, spoiler, tail plates, and spoiler with VGs are introduced and analysed for the evaluation of drag coefficient for passenger car. The addition of these add-on devices are reduces the drag-coefficient and lift coefficient in head-on wind. Rounding the edges partially reduces drag in head-on wind but does not bring about the significant improvements in the aerodynamic efficiency of the passenger car with add-on devices, and it can be obtained. Hence, the drag force can be reduced by using add-on devices on vehicle and fuel economy, stability of a passenger car can be improved.
机译:这项工作提出了一个有效的数值模型,该模型使用计算流体动力学(CFD)来获得带有不同附加设备的乘用车周围的流动结构。使用ANSYS Fluent(CFD求解器)构建了乘用车和网格的计算/数值模型,并在本工作中采用了该模型。在这项研究中,完成了数值迭代,然后可视化了空气动力学数据和详细的复杂流动结构。在本文中,使用SolidWorks开发了通用乘用车模型,生成了风洞,并在ANSYS工作台平台中应用了边界条件,然后进行了测试和仿真,以评估乘用车的阻力系数。在另一种情况下,介绍了最合适的涡流发生器,扰流板,尾板和带VG的扰流板设计的空气动力学特性,并进行了分析,以评估乘用车的阻力系数。这些附加设备的添加减少了迎风时的阻力系数和升力系数。使边缘变圆部分地减小了迎风时的阻力,但是并没有带来带有附加装置的乘用车的空气动力学效率的显着改善,并且可以实现。因此,通过在车辆上使用附加装置可以减小阻力,并且可以节省燃料,可以提高乘用车的稳定性。

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