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Solution of Newell – Whitehead – Segal Equation of Fractional Order by Using Sumudu Decomposition Method

机译:Newell - Whitehead - 使用Sumudu分解方法的分数顺序Segal方程的解决方案

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Newell Whitehead Segal (NWS) equation has been used in describing many natural phenomena arising in fluid mechanics and hence acquired more attention. Studies in the past gave importance to obtaining numerical or analytical solutions of this kind of equations by employing methods like Modified Homotopy Analysis Transform method (MHATM), Adomian Decomposition method (ADM), Homotopy Analysis Sumudu Transform method (HASTM), Fractional Complex Transform (FCT) coupled with He's polynomials method (FCT-HPM) and Fractional Residual Power Series method (FRPSM). This research aims to demonstrate an efficient analytical method called the Sumudu Decomposition Method (SDM) for the study of analytical and numerical solutions of the NWS of fractional order. The coupling of Adomian Decomposition method with Sumudu transform method simplifies the calculation. From the numerical results obtained, it is evident that SDM is easy to execute and offers accurate results for the NWS equation than with other methods such as FCT-HPM and FRPSM. Therefore, it is easy to apply the coupling of Adomian Decomposition technique with Sumudu transform method, and when applied to nonlinear differential equations of fractional order, it yields accurate results.
机译:Newell Whitehead Segal(NWS)方程已被用于描述流体力学中产生的许多自然现象,因此获得更多关注。过去的研究具有通过采用修正同型同型分析变换方法(MHATM),ADOMIAN分解方法(ADM),同族分析SUMUDU变换方法(HASTM),分数复制( FCT)与他的多项式方法(FCT-HPM)和分数剩余动力串联方法(FRPSM)相结合。该研究旨在展示一种有效的分析方法,称为Sumudu分解方法(SDM),用于研究分数阶数的分析和数值解。 adomian分解方法与Sumudu变换方法的耦合简化了计算。从获得的数值结果中,显而易见的是,SDM易于执行,并为NWS方程提供比其他方法(如FCT-HPM和FRPSM)执行的准确结果。因此,易于使用Sumudu变换方法应用Adomian分解技术的耦合,并且当应用于分数顺序的非线性微分方程时,它产生了准确的结果。

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