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Numerical Simulation of the Flow around Two Fixed Circular Airfoils Positioned in Tandem Using the LS-STAG Method

机译:用LS-STAG方法对串联排列的两个固定圆形翼型绕流的数值模拟

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摘要

In recent years the popularity of immersed boundary methods has been increasing in computational hydrodynamics. One of the most effective methods of this class is the LS-STAG method developed in 2010, which allows computations on sufficiently coarse grids. A software package was developed to solve a number of hydrodynamics and hydroelasticity problems by the LS-STAG method. We present the results of the testing the developed software package by simulating a flow around two fixed circular airfoils positioned in tandem at different distances between the airfoils. We simulate the flow modes for which two symmetric vortices, two asymmetrical vortices, and a vortex wake form behind the front airfoil. For each mode, the typical time dependences of the drag force and lift coefficients are presented. The results agree well with the experimental data in the literature and numerical results of other authors.
机译:近年来,沉浸边界方法在计算流体力学中的流行已经增加。此类中最有效的方法之一是2010年开发的LS-STAG方法,该方法允许在足够粗糙的网格上进行计算。开发了软件包,以通过LS-STAG方法解决许多流体动力学和水弹性问题。我们通过模拟围绕两个串联放置的固定圆形翼型在翼型之间的不同距离周围的流动来测试开发的软件包的结果。我们模拟了在前机翼后面形成两个对称涡流,两个非对称涡流和涡流尾流的流动模式。对于每种模式,都显示了阻力和升力系数的典型时间依赖性。结果与文献中的实验数据和其他作者的数值结果吻合良好。

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