An efficient hybrid computational technique for the time dependent Lane-Emden equation of arbitrary order

The study of dynamic behaviour of nonlinear models that arise in ocean engineering play a vital role in our daily life. There are many examples of ocean water waves which are nonlinear in nature. In shallow water, the linearization of the equations imposes severe conditions on wave amplitude than it...

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Main Authors: Manish Goyal, Amit Prakash, Dumitru Baleanu
Format: Article
Language:English
Published: Elsevier 2022-04-01
Series:Journal of Ocean Engineering and Science
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2468013321000498
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author Manish Goyal
Amit Prakash
Dumitru Baleanu
author_facet Manish Goyal
Amit Prakash
Dumitru Baleanu
author_sort Manish Goyal
collection DOAJ
description The study of dynamic behaviour of nonlinear models that arise in ocean engineering play a vital role in our daily life. There are many examples of ocean water waves which are nonlinear in nature. In shallow water, the linearization of the equations imposes severe conditions on wave amplitude than it does in deep water, and the strong nonlinear effects are observed. In this paper, q-homotopy analysis Laplace transform scheme is used to inspect time dependent nonlinear Lane-Emden type equation of arbitrary order. It offers the solution in a fast converging series. The uniqueness and convergence analysis of the considered model is presented. The given examples confirm the competency as well as accuracy of the presented scheme. The behavior of obtained solution for distinct orders of fractional derivative is discussed through graphs. The auxiliary parameter ħ offers a suitable mode of handling the region of convergence. The outcomes reveal that the q-HATM is attractive, reliable, efficient and very effective.
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spelling doaj.art-7ec8cc60cb00484088fbddc70204adb02022-12-22T02:40:58ZengElsevierJournal of Ocean Engineering and Science2468-01332022-04-0172131142An efficient hybrid computational technique for the time dependent Lane-Emden equation of arbitrary orderManish Goyal0Amit Prakash1Dumitru Baleanu2Department of Mathematics, Institute of Applied Sciences and Humanities, GLA University, Mathura, IndiaDepartment of Mathematics, National Institute of Technology, Kurukshetra, India; Corresponding author.Department of Mathematics, Faculty of Arts and Sciences, Cankaya University, Etimesgut, Turkey; Institute of Space Sciences, Magurele-Bucharest, RomaniaThe study of dynamic behaviour of nonlinear models that arise in ocean engineering play a vital role in our daily life. There are many examples of ocean water waves which are nonlinear in nature. In shallow water, the linearization of the equations imposes severe conditions on wave amplitude than it does in deep water, and the strong nonlinear effects are observed. In this paper, q-homotopy analysis Laplace transform scheme is used to inspect time dependent nonlinear Lane-Emden type equation of arbitrary order. It offers the solution in a fast converging series. The uniqueness and convergence analysis of the considered model is presented. The given examples confirm the competency as well as accuracy of the presented scheme. The behavior of obtained solution for distinct orders of fractional derivative is discussed through graphs. The auxiliary parameter ħ offers a suitable mode of handling the region of convergence. The outcomes reveal that the q-HATM is attractive, reliable, efficient and very effective.http://www.sciencedirect.com/science/article/pii/S2468013321000498Fractional differential equations (FDE)Time dependent Lane-Emden type differential equationCaputo derivative of arbitrary orderq-homotopy analysis transform scheme (q-HATM)Laplace transform
spellingShingle Manish Goyal
Amit Prakash
Dumitru Baleanu
An efficient hybrid computational technique for the time dependent Lane-Emden equation of arbitrary order
Journal of Ocean Engineering and Science
Fractional differential equations (FDE)
Time dependent Lane-Emden type differential equation
Caputo derivative of arbitrary order
q-homotopy analysis transform scheme (q-HATM)
Laplace transform
title An efficient hybrid computational technique for the time dependent Lane-Emden equation of arbitrary order
title_full An efficient hybrid computational technique for the time dependent Lane-Emden equation of arbitrary order
title_fullStr An efficient hybrid computational technique for the time dependent Lane-Emden equation of arbitrary order
title_full_unstemmed An efficient hybrid computational technique for the time dependent Lane-Emden equation of arbitrary order
title_short An efficient hybrid computational technique for the time dependent Lane-Emden equation of arbitrary order
title_sort efficient hybrid computational technique for the time dependent lane emden equation of arbitrary order
topic Fractional differential equations (FDE)
Time dependent Lane-Emden type differential equation
Caputo derivative of arbitrary order
q-homotopy analysis transform scheme (q-HATM)
Laplace transform
url http://www.sciencedirect.com/science/article/pii/S2468013321000498
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