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Application of the method of fundamental solutions and the radial basis functions for viscous laminar flow in wavy channel

机译:粘性层流在波浪通道中基本解法和径向基函数的应用

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摘要

This paper deals with the problem of viscous laminar flow in a wavy channel using the method of fundamental solutions and the radial basis functions. First approximation was obtained when the Reynolds number equals zero, in which the considered problem is homogeneous problem which can be easily solved using the method of fundamental solutions. In order to obtain subsequent approximations of the solution, the nonlinear problem was transformed into a sequence of inhomogeneous problems using the Picard iteration method. Applying the method of particular solutions on each iteration step the solution consists of the general solution and the particular solution. The right-hand side of the governing equation in subsequent iteration steps was interpolated using the radial basis functions. Simultaneously the particular solution was obtained and the general solution was obtained by means of the method of fundamental solutions. The unknown coefficients of the solution were obtained using the boundary collocation technique. The main advantage of the proposed procedure is its simplicity and analytical form of the approximate solution. Such meshless approach was never applied previously for the problem of viscous laminar flow in the wavy channel.
机译:本文采用基本解和径向基函数的方法,解决了波浪通道中粘性层流问题。当雷诺数等于零时获得一阶近似值,其中考虑的问题是齐次问题,可以使用基本解法轻松解决。为了获得解的后续近似值,使用皮卡德迭代方法将非线性问题转换为一系列不均匀问题。在每个迭代步骤上应用特定解决方案的方法,该解决方案包括一般解决方案和特定解决方案。使用径向基函数对后续迭代步骤中控制方程的右侧进行插值。同时通过基本解的方法得到了特定的解,得到了一般的解。使用边界搭配技术获得解的未知系数。拟议程序的主要优点是其简单性和近似解的分析形式。这种无网格的方法以前从未应用于波浪通道中粘性层流的问题。

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