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Flow and turbulent structures around simplified car models

机译:简化汽车模型周围的流动和湍流结构

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摘要

External car aerodynamics study has great importance in overall car efficiency and ride stability, being a key element in successful automotive design. The flow over car geometries shows three dimensional and unsteady turbulent characteristics. Additionally, vortex shedding, flow reattachment and recirculation bubbles are also found around the bluff body. These phenomena greatly influence the lift and drag coefficients, which are fundamental for ride stability and energy efficiency, respectively. The aim of the present study is focused on the assessment of different LES models (e.g. VMS or SIGMA models), as well as to show their capabilities of capturing the large scale turbulent flow structures in car-like bodies using relative coarse grids. In order to achieve these objectives, the flow around two model car geometries, the Ahmed and the Asmo cars, is simulated. These generic bluff bodies reproduce the basic fluid dynamics features of real cars. First, the flow over both geometries is studied and compared against experimental results to validate the numerical results. Then, different LES models are used to study the flow in detail and compare the structures found in both geometries.
机译:外部空气动力学研究对于总体汽车效率和行驶稳定性至关重要,是成功进行汽车设计的关键因素。汽车几何形状上的流动显示出三维和不稳定的湍流特征。另外,在钝体周围还发现涡旋脱落,流动重新附着和再循环气泡。这些现象极大地影响了升力和阻力系数,而升力和阻力系数分别是行驶稳定性和能源效率的基础。本研究的目的在于评估不同的LES模型(例如VMS或SIGMA模型),并展示其使用相对粗糙的网格捕获类车体中大规模湍流结构的能力。为了实现这些目标,模拟了两个模型车几何体(Ahmed和Asmo车)周围的流动。这些通用的非流线形车身重现了真实汽车的基本流体动力学特征。首先,研究了两种几何结构上的流动并将其与实验结果进行比较以验证数值结果。然后,使用不同的LES模型详细研究流动并比较两种几何结构中的结构。

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