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Engineering analysis with boundary elements, 2019
In this study, the direct meshless local Petrov–Galerkin (DMLPG) method has been employed to solve the stochastic Cahn–Hilliard–Cook and Swift–Hohenberg equations. First of all, we discretize the temporal direction by a finite difference scheme. In order
M. Abbaszadeh +4 more
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In this study, the direct meshless local Petrov–Galerkin (DMLPG) method has been employed to solve the stochastic Cahn–Hilliard–Cook and Swift–Hohenberg equations. First of all, we discretize the temporal direction by a finite difference scheme. In order
M. Abbaszadeh +4 more
semanticscholar +1 more source
Numerical simulation for solution of SEIR models by meshless and finite difference methods
, 2020The transmission of influenza has been explained by analyzing a diffusive epidemic model. The Operating splitting based on finite difference (OSBFD), explicit formula based on meshless method (EFBMM), Operator splitting based on meshless method (OSBMM ...
M. Asif +3 more
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19th AIAA Computational Fluid Dynamics, 2009
Development of a new meshless technique is described, called the meshless volume scheme. The method is completely meshless, yet retains the low storage and simple flux distribution technique characteristic of finite volume methods. The new method is based on the well-known Taylor series expansion method with least squares.
Aaron Katz, Antony Jameson
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Development of a new meshless technique is described, called the meshless volume scheme. The method is completely meshless, yet retains the low storage and simple flux distribution technique characteristic of finite volume methods. The new method is based on the well-known Taylor series expansion method with least squares.
Aaron Katz, Antony Jameson
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2011 International Conference on Multimedia Technology, 2011
Combining a kind of new adaptive technique with the radial point interpolation method (RPIM), it yields the adaptive RPIM meshless methods. We solved the classical cantilever beam problem using this method. Numerical results show the accuracy and efficiency of the present method.
null Xiaokun Zhang +2 more
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Combining a kind of new adaptive technique with the radial point interpolation method (RPIM), it yields the adaptive RPIM meshless methods. We solved the classical cantilever beam problem using this method. Numerical results show the accuracy and efficiency of the present method.
null Xiaokun Zhang +2 more
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Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2022
B. Ullah +3 more
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B. Ullah +3 more
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Analytical and meshless numerical approaches to unified gradient elasticity theory
, 2021K. Żur, S. Faghidian
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2009
In order to improve their applicability as a tool for solving partial differential equations in computational science, we equip kernel-based meshless methods with a number of new capabilities. First, we provide kernel-based meshless methods with the first wellposed, general technique which allows for adaptively-scaled trial functions.
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In order to improve their applicability as a tool for solving partial differential equations in computational science, we equip kernel-based meshless methods with a number of new capabilities. First, we provide kernel-based meshless methods with the first wellposed, general technique which allows for adaptively-scaled trial functions.
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Meshless methods: An overview and recent developments
, 1996T. Belytschko +4 more
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