This work describes the application of a novel meshless numerical technique, based on local collocation with radial basis functions (RBFs), to the solution of steady poroelastic problems. Its formulation allows scalability to large problem sizes, in contrast to traditional full-domain RBF collocation methods which are restricted to small datasets due to issues with numerical conditioning and computational cost. The proposed method is validated using a benchmark linear elasticity numerical example and a coupled steady poroelastic deformation problem, for which analytical solutions are known. Highly accurate solutions are obtained in each case, and convergence rates in excess of sixth-order are observed
Current methods for solving thermoelasticity problems involve using finite element analysis, boundar...
Solving partial differential equations (PDEs) can require numerical methods, especially for non-line...
Current methods for solving thermoelasticity problems involve using finite element analysis, boundar...
This work describes the application of a novel meshless numerical technique, based on local colloca...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
This book surveys the latest advances in radial basis function (RBF) meshless collocation methods wh...
In this paper we present a localized meshless method using radial basis functions (RBFs) for solving...
AbstractThe basic characteristic of the techniques generally known as meshless methods is the attemp...
Many computational fluid dynamics problems utilize finite volume frameworks for simulation, due to t...
AbstractThe present study aims to introduce a solution for parabolic integro-differential equations ...
Current methods for solving thermoelasticity problems involve using finite element analysis, boundar...
Solving partial differential equations (PDEs) can require numerical methods, especially for non-line...
Current methods for solving thermoelasticity problems involve using finite element analysis, boundar...
This work describes the application of a novel meshless numerical technique, based on local colloca...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
International audiencen this work, we describe a meshless numerical method based on local collocatio...
This book surveys the latest advances in radial basis function (RBF) meshless collocation methods wh...
In this paper we present a localized meshless method using radial basis functions (RBFs) for solving...
AbstractThe basic characteristic of the techniques generally known as meshless methods is the attemp...
Many computational fluid dynamics problems utilize finite volume frameworks for simulation, due to t...
AbstractThe present study aims to introduce a solution for parabolic integro-differential equations ...
Current methods for solving thermoelasticity problems involve using finite element analysis, boundar...
Solving partial differential equations (PDEs) can require numerical methods, especially for non-line...
Current methods for solving thermoelasticity problems involve using finite element analysis, boundar...