Solving Nonlinear Elliptic PDEs in 2D and 3D Using Polyharmonic Splines and Low-Degree of Polynomials
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作者:
Rubasinghe, Kalani
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Clarkson Univ Potsdam, Dept Math, New York, NY 13699 USAClarkson Univ Potsdam, Dept Math, New York, NY 13699 USA
Rubasinghe, Kalani
[1
]
Yao, Guangming
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Clarkson Univ Potsdam, Dept Math, New York, NY 13699 USA
Fordham Univ New York City, Dept Math, New York, NY 10458 USAClarkson Univ Potsdam, Dept Math, New York, NY 13699 USA
Yao, Guangming
[1
,4
]
Li, Wen
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Univ Calif Los Angeles, Dept Math, Los Angeles, CA USA
Fordham Univ New York City, Dept Math, New York, NY 10458 USAClarkson Univ Potsdam, Dept Math, New York, NY 13699 USA
Li, Wen
[2
,4
]
Tsogtgerel, Gantumur
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Stat McGill Univ, Dept Math, Montreal, PQ, CanadaClarkson Univ Potsdam, Dept Math, New York, NY 13699 USA
Tsogtgerel, Gantumur
[3
]
机构:
[1] Clarkson Univ Potsdam, Dept Math, New York, NY 13699 USA
[2] Univ Calif Los Angeles, Dept Math, Los Angeles, CA USA
[3] Stat McGill Univ, Dept Math, Montreal, PQ, Canada
[4] Fordham Univ New York City, Dept Math, New York, NY 10458 USA
In this paper, the improved localized method of approximated particular solutions (ILMAPS) using polyharmonic splines (PHS) together with a low-degree of polynomial basis is used to approximate solutions of various nonlinear elliptic Partial Differential Equations (PDEs). The method is completely meshfree, and it uses a radial basis function (RBF) that has no shape parameters. The discretization process is done through a simple collocation technique on a set of points in the local domain of influence. Resulted system of nonlinear algebraic equations is solved by the Picard method.The performance of the proposed method is tested on various nonlinear elliptical problems, including the Poisson-type problems in 2D and 3D with constant or variable coefficients on rectangular or irregular domains and the Poisson-Boltzmann equation with Dirichlet boundary conditions or mixed boundary conditions. The effect of domain shapes in 2D and 3D, types of boundary conditions, and degrees of PHS, and order of polynomial basis are examined. The performance of the method is compared with other bases such as multiquadrics (MQ) basis functions, and with results reported in the literature (method of particular solutions using polynomials). The numerical experiments suggest that ILMAPS with polyharmonic splines yields considerably superior accuracy than other RBFs as well as other approaches reported in the literature for solving nonlinear elliptic PDEs.
机构:
Clarkson Univ, Dept Math, Potsdam, NY 13699 USA
State Univ New York Canton, Dept Humanities, Canton, NY 13617 USAClarkson Univ, Dept Math, Potsdam, NY 13699 USA
Rubasinghe, Kalani
Yao, Guangming
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机构:
Clarkson Univ, Dept Math, Potsdam, NY 13699 USAClarkson Univ, Dept Math, Potsdam, NY 13699 USA
Yao, Guangming
Niu, Jing
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机构:
Harbin Normal Univ, Dept Math, Harbin, Peoples R ChinaClarkson Univ, Dept Math, Potsdam, NY 13699 USA
Niu, Jing
Tsogtgerel, Gantumur
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McGill Univ, Dept Math & Stat, Montreal, PQ H3A 2K6, CanadaClarkson Univ, Dept Math, Potsdam, NY 13699 USA
机构:
Institute for Mathematical Modelling, Russian Academy of Sciences, Miusskaya sq. 4a, Moscow,125047, RussiaInstitute for Mathematical Modelling, Russian Academy of Sciences, Miusskaya sq. 4a, Moscow,125047, Russia