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STUDY OF DRAG REDUCTION DEVICES FOR A SQUARE BACK VEHICLE CONFIGURATION USING RANS CFD SIMULATIONS

机译:基于RANS CFD仿真的方型后排车辆减量化装置研究

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The aerodynamic flow around a simplified road vehicle model with and without drag reduction devices is investigated. The simulations are carried out using the unsteady RANS in conjunction with the v~2-/turbulence model. The corresponding experiments are performed in a small wind tunnel which includes pressure and velocity fields measurements. The devices are add-on geometry parts (a box with a cavity and, boat-tail without a cavity) which are attached to the back of the square-back model to improve the pressure recovery and reduce the flow unsteadiness. The results show that the recirculation regions at the base are shortened and weakened and the base pressure is significantly increased by the devices which lead to lower drag coefficients (up to 30% reduction in drag). Also, the results indicate a reduction of the turbulence intensities in the wake as well as a rapid upward deflection of the underbody flow with the devices in place. A suppression or damping of the unsteadiness is the common element of the devices studied. The baseline configuration (square-back) exhibits strong three-dimensional flapping of the wake. The main shedding frequency captured agrees well with the available experimental data. Comparisons with the measurements show that the simulations agree reasonably well with the experiments in terms of drag and the flow structures.
机译:研究了带有和不带有减阻装置的简化公路车辆模型周围的空气流动。仿真是使用非稳态RANS结合v〜2- /湍流模型进行的。相应的实验在一个小型风洞中进行,该风洞包括压力场和速度场的测量。这些设备是附加的几何零件(带有空腔的盒子,没有空腔的船尾),它们被连接到方背模型的背面,以提高压力恢复能力并减少流动的不稳定性。结果表明,利用这些装置可以缩短和削弱基部的回流区域,并显着增加基部压力,从而降低阻力系数(阻力降低多达30%)。而且,结果表明,在装置就位的情况下,尾流中湍流强度的降低以及车身底部气流的快速向上偏转。抑制或抑制不稳定性是所研究设备的常见要素。基线配置(方后卫)表现出强大的尾流三维震荡。捕获的主要脱落频率与可用的实验数据非常吻合。与测量结果的比较表明,在阻力和流动结构方面,模拟与实验相当吻合。

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