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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >The lid-driven square cavity flow: numerical solution with a 1024 x 1024 grid
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The lid-driven square cavity flow: numerical solution with a 1024 x 1024 grid

机译:盖子驱动的方腔流:具有1024 x 1024网格的数值解

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摘要

The problem of flow inside a square cavity whose lid has constant velocity is solved. This problem is modeled by the Navier-Stokes equations. The numerical model is based on the finite volume method with numerical approximations of second-order accuracy and multiple Richardson extrapolations (MRE). The iterative process was repeated until the machine round-off error achievement. This work presents results for 42 variables of interest, and their discretization errors estimates, on the 1024 x 1024 nodes grid and the following Reynolds numbers: 0.01, 10, 100, 400 and 1000. These results are compared with sixteen sources in literature. The numerical solutions of this work are the most accurate obtained for this problem to date. The use of multiple Richardson extrapolations reduces the discretization error significantly.
机译:解决了盖子盖具有恒定速度的方腔内部的流动问题。这个问题由Navier-Stokes方程建模。数值模型基于有限体积方法,具有近似二阶精度和多重Richardson外推法(MRE)的数值。重复迭代过程,直到达到机器舍入错误为止。这项工作在1024 x 1024节点网格和以下雷诺数(0.01、10、100、400和1000)上显示了42个感兴趣的变量的结果及其离散误差估计。这些结果与文献中的16个来源进行了比较。迄今为止,这项工作的数值解是最准确的。使用多个Richardson外推法可以显着减少离散化误差。

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