Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method

The Multistep Modified Reduced Differential Transform Method (MMRDTM) is proposed in this paper. It is implemented to solve the forced nonlinear Korteweg-de Vries (fnKdV) equations. There are several advantages of the proposed method. Using the suggested approach, a high-speed converging series can...

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Main Authors: Che Haziqah Che Hussin, Arif Mandangan, Amirah Azmi, Adem Kilicman
Format: Article
Language:English
English
Published: Semarak Ilmu Publishing 2022
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Online Access:https://eprints.ums.edu.my/id/eprint/35081/2/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/35081/1/FULLTEXT.pdf
https://eprints.ums.edu.my/id/eprint/35081/
https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/842/744
https://doi.org/10.37934/arfmts.99.2.197206
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Institution: Universiti Malaysia Sabah
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spelling my.ums.eprints.350812023-02-13T07:04:47Z https://eprints.ums.edu.my/id/eprint/35081/ Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method Che Haziqah Che Hussin Arif Mandangan Amirah Azmi Adem Kilicman QA299.6-433 Analysis The Multistep Modified Reduced Differential Transform Method (MMRDTM) is proposed in this paper. It is implemented to solve the forced nonlinear Korteweg-de Vries (fnKdV) equations. There are several advantages of the proposed method. Using the suggested approach, a high-speed converging series can be approximated analytically. Furthermore, the number of calculated terms is reduced significantly. The nonlinear term in fnKdV equations is substituted with corresponding Adomian polynomials before applying the multi-step technique. As a result, we provided simpler and more effective ways to solve fnKdV equations. On top of that, the solutions can be approximated more accurately over a longer period of time. To show the MMRDTM's capability and accuracy, we consider several of the fnKdV examples to illustrate the proposed method’s potential in analytical approximation. Then, the features of the solutions are represented in tabular and graphical forms. In conclusion, the proposed method delivers highly accurate and precise solutions for these types of equations. Semarak Ilmu Publishing 2022-09-22 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/35081/2/ABSTRACT.pdf text en https://eprints.ums.edu.my/id/eprint/35081/1/FULLTEXT.pdf Che Haziqah Che Hussin and Arif Mandangan and Amirah Azmi and Adem Kilicman (2022) Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method. Journal of advanced research in fluid mechanics and thermal sciences, 99. pp. 197-206. ISSN 2289-7879 https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/842/744 https://doi.org/10.37934/arfmts.99.2.197206
institution Universiti Malaysia Sabah
building UMS Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sabah
content_source UMS Institutional Repository
url_provider http://eprints.ums.edu.my/
language English
English
topic QA299.6-433 Analysis
spellingShingle QA299.6-433 Analysis
Che Haziqah Che Hussin
Arif Mandangan
Amirah Azmi
Adem Kilicman
Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method
description The Multistep Modified Reduced Differential Transform Method (MMRDTM) is proposed in this paper. It is implemented to solve the forced nonlinear Korteweg-de Vries (fnKdV) equations. There are several advantages of the proposed method. Using the suggested approach, a high-speed converging series can be approximated analytically. Furthermore, the number of calculated terms is reduced significantly. The nonlinear term in fnKdV equations is substituted with corresponding Adomian polynomials before applying the multi-step technique. As a result, we provided simpler and more effective ways to solve fnKdV equations. On top of that, the solutions can be approximated more accurately over a longer period of time. To show the MMRDTM's capability and accuracy, we consider several of the fnKdV examples to illustrate the proposed method’s potential in analytical approximation. Then, the features of the solutions are represented in tabular and graphical forms. In conclusion, the proposed method delivers highly accurate and precise solutions for these types of equations.
format Article
author Che Haziqah Che Hussin
Arif Mandangan
Amirah Azmi
Adem Kilicman
author_facet Che Haziqah Che Hussin
Arif Mandangan
Amirah Azmi
Adem Kilicman
author_sort Che Haziqah Che Hussin
title Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method
title_short Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method
title_full Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method
title_fullStr Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method
title_full_unstemmed Solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method
title_sort solitary wave solutions for forced nonlinear korteweg-de vries equation by using approximate analytical method
publisher Semarak Ilmu Publishing
publishDate 2022
url https://eprints.ums.edu.my/id/eprint/35081/2/ABSTRACT.pdf
https://eprints.ums.edu.my/id/eprint/35081/1/FULLTEXT.pdf
https://eprints.ums.edu.my/id/eprint/35081/
https://semarakilmu.com.my/journals/index.php/fluid_mechanics_thermal_sciences/article/view/842/744
https://doi.org/10.37934/arfmts.99.2.197206
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