This paper describes a mesh refinement scheme for boundary element method in which the number of elements, the size of elements, element end locations and the element polynomial order are determined to meet the user specified accuracy. The use of grading function in conjunction with the L1 norm makes the mesh refinement scheme applicable to a variety of boundary element formulation and applications. The algorithm is stable for smooth, discontinuous, as well as singular density functions. Numerical results for mathematical test functions as well as for elastostatic problems demonstrate the viability and versatility of the algorithm for BEM applications. © 2010 Elsevier Ltd
This paper presents an efficient way to implement the Boundary Element Method (BEM) to capture high ...
The boundary element method (BEM) is an efficient numerical method that approximates solutions of va...
This paper presents an efficient way to implement the Boundary Element Method (BEM) to capture high ...
This paper describes a mesh refinement technique for boundary element method in which the number of ...
This paper describes a general approach to compute the boundary integral equations that appear when ...
In the Boundary Element Method (BEM) the density functions are approximated by interpolation functio...
To solve a problem by the boundary element method requires a solution of an integral equation. By di...
AbstractThe boundary element method (BEM) is a popular method to solve various problems in engineeri...
We review recent algorithmic developments in the boundary element method (BEM) for large scale engin...
In this chapter we are going to develop some aspects of the implementation of the boundary element m...
In this chapter we are going to develop some aspects of the implementation of the boundary element m...
The aim of the boundary element method (BEM) is the numerical solution of integral equations derived...
This paper presents two types of discontinuity modeling elements (DME) that minimize the error near ...
Nonlinear stress analysis (a branch of solid mechanics) is an essential feature in the design of suc...
We present an efficient way to implement the Boundary Element Method (BEM) to capture high activity ...
This paper presents an efficient way to implement the Boundary Element Method (BEM) to capture high ...
The boundary element method (BEM) is an efficient numerical method that approximates solutions of va...
This paper presents an efficient way to implement the Boundary Element Method (BEM) to capture high ...
This paper describes a mesh refinement technique for boundary element method in which the number of ...
This paper describes a general approach to compute the boundary integral equations that appear when ...
In the Boundary Element Method (BEM) the density functions are approximated by interpolation functio...
To solve a problem by the boundary element method requires a solution of an integral equation. By di...
AbstractThe boundary element method (BEM) is a popular method to solve various problems in engineeri...
We review recent algorithmic developments in the boundary element method (BEM) for large scale engin...
In this chapter we are going to develop some aspects of the implementation of the boundary element m...
In this chapter we are going to develop some aspects of the implementation of the boundary element m...
The aim of the boundary element method (BEM) is the numerical solution of integral equations derived...
This paper presents two types of discontinuity modeling elements (DME) that minimize the error near ...
Nonlinear stress analysis (a branch of solid mechanics) is an essential feature in the design of suc...
We present an efficient way to implement the Boundary Element Method (BEM) to capture high activity ...
This paper presents an efficient way to implement the Boundary Element Method (BEM) to capture high ...
The boundary element method (BEM) is an efficient numerical method that approximates solutions of va...
This paper presents an efficient way to implement the Boundary Element Method (BEM) to capture high ...