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Field Velocity Approach and Geometric Conservation Law for Unsteady Flow Simulations

机译:非恒定流模拟的场速度方法和几何守恒律。

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摘要

A technique to model unsteady flow phenomenon which involves simultaneous elastic motions of the boundaries and interaction with gust fields is discussed. The field velocity approach is used to include the effect of the gust fields caused by a vortex wake into the flow computations. Elastic deformations of the boundaries cause changes in grid cell volumes which require the rigorous enforcement of the geometric conservation law. Mathematical modeling required to enforce conservation when performing such unsteady flow computations is presented. The application of the technique developed to a variety of problems from simple 2-D model problems to more complex realistic problems are described. The predictions obtained are validated with exact analytical results/experimental data as appropriate. Overall, the field velocity approach together with a technique to enforce the geometric conservation law is found to be a powerful tool for unsteady flow simulation.
机译:讨论了一种模拟非稳定流动现象的技术,该技术涉及边界的同时弹性运动以及与阵风场的相互作用。场速度方法用于将由涡流尾流引起的阵风场的影响纳入流量计算中。边界的弹性变形会导致网格单元体积发生变化,这需要严格执行几何守恒定律。提出了执行这种非恒定流计算时强制守恒所需的数学模型。描述了该技术在从简单的二维模型问题到更复杂的现实问题等各种问题中的应用。适当地使用准确的分析结果/实验数据验证获得的预测。总体而言,发现场速方法与实施几何守恒定律的技术一起是用于非恒定流模拟的强大工具。

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