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Hierarchical Expansion Method in the Solution of the Navier-Stokes Equations for Incompressible Fluids in Laminar Two-Dimensional Flow

机译:层流二维流中不可压缩流体Navier-Stokes方程解的分层展开方法

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摘要

Among the several methods used to solve the Navier-Stokes equations Hierarchical Expansion Method has demonstrated satisfactory results. This work aimed to apply the expansion of the variables in hierarchical functions for the solution of the Navier-Stokes equations for incompressible fluids in two dimensions in laminar flow. This method is based on the finite element method. The expansion functions in this study were based on Legendre polynomials, adjusted in the rectangular elements in such a way that corner, side and area functions were defined. The order of the expansion functions associated with the sides and with the area of the elements is adjusted to the necessary or desired degree. This method is denominated by Hierarchical Expansion Method. In order to validate the proposed numeric method three well-known problems of the literature in two dimensions were analyzed; however, for this paper only one problem was presented. The results demonstrated that method was able to provide precise results. From the results obtained in this paper it is possible to conclude that the hierarchical expansion method can be effective for the solution of fluid dynamic problems that involve incompressible fluids.
机译:在用于解决Navier-Stokes方程的几种方法中,层次扩展法已显示出令人满意的结果。这项工作旨在将层级函数中变量的扩展用于层流中二维不可压缩流体的Navier-Stokes方程的求解。此方法基于有限元方法。本研究中的扩展函数基于Legendre多项式,在矩形元素中进行了调整,从而定义了角,边和面积函数。与侧面以及与元件的面积相关联的扩展功能的顺序被调整到必要或期望的程度。此方法以“层次扩展法”命名。为了验证所提出的数值方法,分析了二维文献中的三个众所周知的问题。但是,对于本文,仅提出了一个问题。结果表明该方法能够提供精确的结果。从本文获得的结果可以得出结论,分层展开方法可以有效地解决涉及不可压缩流体的流体动力学问题。

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