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Simulation of Flow Control Devices in Support of Vehicle Drag Reduction

机译:仿真控制车辆减阻支持的流量控制装置

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Flow control devices can enable vehicle drag reduction through the mitigation of separation and by modifying local and global flow features. Passive vortex generators (VG) are an example of a flow control device that can be designed to re-energize weakly-attached boundary layers to prevent or minimize separation regions that can increase drag. Accurate numerical simulation of such devices and their impact on the vehicle aerodynamics is an important step towards enabling automated drag reduction and shape optimization for a wide range of vehicle concepts. This work demonstrates the use of an open-source computational-fluid dynamics (CFD) framework to enable an accurate and robust evaluation of passive vortex generators in support of vehicle drag reduction. Specifically, the backlight separation of the Ahmed body with a 25° slant is used to evaluate different turbulence models including variants of the RANS, DES, and LES formulations. The experimental measurements from Pujals et al. [1] are used for validation and further details such as the total vehicle drag and the slant flow are examined. The adopted simulation framework is demonstrated to accurately capture the flow features of the vortex generators that reduce the backlite separation of the simplified vehicle geometry. The experimental maximum drag reduction of approximately 10% is replicated with both the DES and LES turbulence models. The computational effort and the numerical resolution requirements necessary to simulate the flow control devices are discussed in detail.
机译:流量控制设备可以通过分离缓解和通过修改本地和全局流动特征来实现车辆阻力。被动涡流发生器(Vg)是流量控制装置的示例,该流量控制装置可以设计成重新激励弱附着的边界层,以防止或最小化可以增加阻力的分离区域。准确的这些装置的数值模拟及其对车辆空气动力学的影响是实现自动阻力减阻和为各种车辆概念的形状优化的重要步骤。这项工作展示了使用开源计算流体动力学(CFD)框架,以便在支持车辆阻力时实现无源涡流发生器的准确和稳健地评估。具体地,使用25°倾斜的Ahmed主体的背光分离用于评估包括RAN,DES和LES配方的变体的不同湍流模型。 Pujals等人的实验测量。 [1]用于验证和进一步的细节,例如总车辆拖动和倾斜流程。所采用的仿真框架被证明是为了精确地捕获涡流发生器的流动特征,从而减少简化车辆几何形状的背胎分离。通过DES和LES湍流模型复制了大约10%的实验最大阻力。详细讨论了模拟流量控制装置所需的计算工作和数值分辨率要求。

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