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Computational visualization of unsteady flow around vehicles using high performance computing

机译:使用高性能计算的车辆周围非稳定流动的计算可视化

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One of the largest-scale unstructured Large Eddy Simulation (LES) of flow around a full-scale road vehicle is conducted on the Earth Simulator in Japan. The main objective of our study is to look into the validity of LES for the assessment of vehicle aerodynamics, especially in the context of its possibility for unsteady or transient aerodynamic forces. Firstly, the aerodynamic LES proposed is quantitatively validated on the ASMO simplified model by comparing the mean pressure distributions on the vehicle surface with those obtained by a conventional Reynolds-Averaged Navier-Stokes simulation (RANS) or a wind tunnel measurement. Then, the method is applied to the full-scale vehicle with complicated geometry to qualitatively investigate the capability of capturing organized flow structures around the vehicle. Finally, unsteady aerodynamic forces acting on the vehicle in transient yawing angle change are estimated and relationship between the flow structures and the transient aerodynamic forces is mentioned. As a result, it is demonstrated that LES will be a powerful tool for the vehicle aerodynamic assessment in the foreseeable future, because it can provide precious aerodynamic data which conventional wind tunnel tests or RANS simulations are difficult to provide.
机译:在日本的Earth Simulator上进行了最大规模的非结构化大型涡流模拟(LES),它绕着全尺寸的公路车辆流动。我们研究的主要目的是研究LES在评估车辆空气动力方面的有效性,尤其是在其可能存在不稳定或瞬态空气动力的情况下。首先,通过比较车辆表面的平均压力分布与通过常规雷诺平均Navier-Stokes模拟(RANS)或风洞测量获得的平均压力分布,在ASMO简化模型上对所提出的空气动力学LES进行了定量验证。然后,将该方法应用于具有复杂几何形状的全尺寸车辆,以定性研究捕获车辆周围有组织的流动结构的能力。最后,估算了在偏航角变化时作用在车辆上的非稳定空气动力,并提到了流动结构与瞬时空气动力之间的关系。结果证明,LES将在可预见的将来成为车辆空气动力学评估的有力工具,因为它可以提供宝贵的空气动力学数据,而传统的风洞测试或RANS模拟很难提供这些数据。

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