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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Spectral Local Linearisation Approach for Natural Convection Boundary Layer Flow
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Spectral Local Linearisation Approach for Natural Convection Boundary Layer Flow

机译:自然对流边界层流的谱局部线性化方法

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The present work introduces a spectral local linearisation method (SLLM) to solve a natural convection boundary layer flow problem with domain transformation. It is customary to find solutions of semi-infinite interval problems by first truncating the interval and subsequently applying a suitable numerical method. However, this gives rise to increased error terms in the numerical solution. Carrying out a transformation of the semi-infinite interval problems into singular problems posed on a finite interval can avoid the domain truncation error and enables the efficient application of collocation methods. The SLLM is based on linearising and decoupling nonlinear systems of equations into a sequence or subsystems of differential equations which are then solved using spectral collocation methods. A comparative study between the SLLM and existing results in the literature was carried out to validate the results. The method has shown to be a promising efficient tool for nonlinear boundary value problems as it gives converging results after very few iterations.
机译:本工作介绍了一种频谱局部线性化方法(SLLM),以通过域变换解决自然对流边界层流动问题。通常首先通过截断间隔,然后应用适当的数值方法来找到半无限间隔问题的解决方案。但是,这导致数值解中的误差项增加。将半无限区间问题转换为有限区间上的奇异问题,可以避免域截断错误,并可以有效地应用搭配方法。 SLLM基于将方程组的非线性系统线性化和解耦为微分方程的序列或子系统,然后使用频谱配置方法进行求解。对SLLM和文献中现有结果进行了比较研究,以验证结果。该方法已证明是解决非线性边值问题的有前途的有效工具,因为它经过很少的迭代就可以得出收敛的结果。

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