A BIE for a Second Order Elliptic Partial Differential Equation with Variable Coefficients

1995 ◽  
pp. 2683-2688 ◽  
Author(s):  
W. T. Ang ◽  
J. Kusuma ◽  
D. L. Clements
2020 ◽  
Vol 2020 (1) ◽  
Author(s):  
Tingfu Ma ◽  
Yongbin Ge

Abstract Blended compact difference (BCD) schemes with fourth- and sixth-order accuracy are proposed for approximating the three-dimensional (3D) variable coefficients elliptic partial differential equation (PDE) with mixed derivatives. With truncation error analyses, the proposed BCD schemes can reach their theoretical accuracy, respectively, for the interior gird points and require 19 points compact stencil. They fully blend the implicit compact difference (CD) scheme and the explicit CD scheme together to make the derivation method and programming easier. The BCD schemes are also decoupled, which means the unknown function and its derivatives are separately resolved by different finite difference equations. Moreover, the sixth-order schemes are developed to solve the first-order derivatives, the second-order derivatives and the second-order mixed derivatives on boundaries. Several test problems are applied to show that the present BCD schemes are more accurate than those in the literature.


Author(s):  
D. L. Clements

AbstractA method is derived for the solution of boundary value problems governed by a second-order elliptic partial differential equation with variable coefficients. The method is obtained by expressing the solution to a particular problem in terms of an integral taken round the boundary of the region under consideration.


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