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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Simulation of Vortex Shedding behind a Flat Plate with Vorticity Based Adaptive Spectral Element Method
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Simulation of Vortex Shedding behind a Flat Plate with Vorticity Based Adaptive Spectral Element Method

机译:基于涡度的自适应光谱元件法模拟平板涡流后面的涡旋脱落

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Vorticity error based adaptive meshes refinement scheme is developed and employed using spectral element method to simulate flow past object problems. In general, it is hard to predict and enhance meshes effectively in a region where the error is larger in the computational domain by using the conforming mesh method. Employing finer meshes throughout the whole domain leads to lengthy computational time and excessive storage. Therefore, an indicator is used to predict the regions where larger errors exist and mesh refinement is needed. To compare the efficiency of indicators, three kinds of properties are used as mesh refinement indicators, including the synthesis of velocity and pressure estimated error, vorticity estimated error, and estimated error decay rate. Simulations of the cavity flow in Re = 100 and 1000 and the cases of flow past an inclined flat plate in Re = 100 to 1000 are performed with the adaptive mesh method and conforming mesh method. The results show that the adaptive mesh method can provide the same accuracy as that of the conforming mesh method with only 62% of the elements.
机译:基于涡流误差基于误差的自适应网格细化方案,并使用频谱元素方法使用频谱元素来模拟流过对象问题。通常,通过使用符合网格方法,在计算域中误差在计算域中较大的区域中,难以预测和增强网格。在整个域中采用更精细的网格导致冗长的计算时间和过多的存储空间。因此,指示器用于预测存在较大误差和需要网格细化的区域。为了比较指标的效率,三种属性用作网格细化指示器,包括合成速度和压力估计误差,涡旋估计误差和估计误差衰减率。利用自适应网格方法和符合网格法,执行Re = 100和1000中的腔流量的模拟和RE = 100至1000中的倾斜平板的情况。结果表明,自适应网格方法可以提供与仅具有62&#X25的符合网格方法相同的精度;元素。

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