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Implementation of Immersed Boundary Method for Rapid and Reliable External Flow Simulations in Automotive

机译:用于汽车中快速可靠的外部流动模拟的浸入边界方法的实现

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The conventional approach for simulating external flow field over an automobile is to use body fitted (BF) mesh. However, depending on the geometrical complexity of the boundaries, grid generation and grid quality are major issues and take significant time and cost. Moreover, preparing a proper body fitted mesh requires manual intervention which makes it too difficult to automate the process of external aerodynamics simulation.A different approach is so called Immersed Boundary (IB) method. It provides a high level of flexibility in handling highly complex geometry. It is usually employed in conjunction with body non-conforming Cartesian grid. Thus, grid generation is greatly simplified. This method can tackle flows with complex stationary or moving boundaries with relative ease.This paper demonstrates the ease of use of the IB method compared to the BF method and possible use of the IB method to automate the external aerodynamics simulations. In present work the results of front-end flow field simulations of a vehicle with complex geometry are evaluated against corresponding conventional body fitted simulations data.
机译:用于模拟汽车外部流场的常规方法是使用车身(BF)网格。但是,取决于边界的几何复杂性,网格生成和网格质量是主要问题,需要大量时间和成本。此外,准备合适的身体贴合网格需要人工干预,这使得自动化外部空气动力学模拟过程变得太困难了。另一种方法称为沉浸边界(IB)方法。它在处理高度复杂的几何图形时提供了高度的灵活性。它通常与不符合标准的笛卡尔网格结合使用。因此,大大简化了网格的生成。该方法可以相对轻松地解决具有复杂固定或移动边界的流动。本文证明了与BF方法相比,IB方法的易用性以及可以使用IB方法自动进行外部空气动力学模拟。在目前的工作中,具有复杂几何形状的车辆的前端流场模拟结果是根据相应的常规车身模拟数据进行评估的。

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