Analytical Solution of Two-Dimensional Sine-Gordon Equation
Author(s) -
Alemayehu Tamirie Deresse,
Yesuf Obsie Mussa,
Ademe Kebede Gizaw
Publication year - 2021
Publication title -
advances in mathematical physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.283
H-Index - 23
eISSN - 1687-9139
pISSN - 1687-9120
DOI - 10.1155/2021/6610021
Subject(s) - discretization , mathematics , convergence (economics) , nonlinear system , transformation (genetics) , partial differential equation , series (stratigraphy) , sine , convergent series , power series , exact solutions in general relativity , mathematical analysis , paleontology , biochemistry , chemistry , physics , geometry , quantum mechanics , biology , economics , gene , economic growth
In this paper, the reduced differential transform method (RDTM) is successfully implemented for solving two-dimensional nonlinear sine-Gordon equations subject to appropriate initial conditions. Some lemmas which help us to solve the governing problem using the proposed method are proved. This scheme has the advantage of generating an analytical approximate solution or exact solution in a convergent power series form with conveniently determinable components. The method considers the use of the appropriate initial conditions and finds the solution without any discretization, transformation, or restrictive assumptions. The accuracy and efficiency of the proposed method are demonstrated by four of our test problems, and solution behavior of the test problems is presented using tables and graphs. Further, the numerical results are found to be in a good agreement with the exact solutions and the numerical solutions that are available in literature. We have showed the convergence of the proposed method. Also, the obtained results reveal that the introduced method is promising for solving other types of nonlinear partial differential equations (NLPDEs) in the fields of science and engineering.
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