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An attractive analytical technique for coupled system of fractional partial differential equations in shallow water waves with conformable derivative

机译:具有适形衍生物浅水波分数局部微分方程耦合系统的吸引力分析技术

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摘要

Mathematical simulation of nonlinear physical and abstract systems is a very vital process for predicting the solution behavior of fractional partial differential equations (FPDEs) corresponding to different applications in science and engineering. In this paper, an attractive reliable analytical technique, the conformable residual power series, is implemented for constructing approximate series solutions for a class of nonlinear coupled FPDEs arising in fluid mechanics and fluid flow, which are often designed to demonstrate the behavior of weakly nonlinear and long waves and describe the interaction of shallow water waves. In the proposed technique then-truncated representation is substituted into the original system and it is assumed the (n - 1) conformable derivative of the residuum is zero. This allows us to estimate coefficients of truncation and successively add the subordinate terms in the multiple fractional power series with a rapidly convergent form. The influence, capacity, and feasibility of the presented approach are verified by testing some real-world applications. Finally, highlights and some closing comments are attached.
机译:非线性物理和抽象系统的数学模拟是预测对应于科学和工程中的不同应用的分数部分微分方程(FPDE)的解决方案行为的一个非常重要的过程。本文实施了一种有吸引力的可靠性分析技术,实现了适力的残余功率系列,用于构建用于在流体力学和流体流动中产生的一类非线性耦合FPDE的近似系列解决方案,这些解决方案通常旨在展示弱非线性的行为和长波并描述浅水波的相互作用。在所提出的技术中,截断的表示被替换为原始系统,并且假设残余物的(n - 1)的适形衍生物为零。这允许我们估计截断的系数,并连续地将多个分数功率系列中的从属术语添加到快速收敛的形式中。通过测试一些现实世界应用来验证所提出的方法的影响力,容量和可行性。最后,附上了亮点和一些结束评论。

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