A new two-dimensional panel technique has been developed to solve Laplacian flows, which eliminates the edge effect present in traditional panel methods. Such a method is very useful for applications where the velocity induced by the panels is required at arbitrary locations. Particle based flow solvers are a prime example. The method, however, requires considerably more computational effort. In this paper the method is modified to improve computational efficiency by adapting the fast multipole algorithm for the panel method. Significant improvement in computational efficiency is obtained while ensuring that the edge effects are eliminated
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2006....
An improved panel method has been developed to calculate compressible inviscid flow through a turbin...
Thesis (Ph.D.)--Boston UniversityBoundary element methods (BEM) have been used for years to solve a ...
Abstract. A new two-dimensional panel technique has been developed to solve Laplacian flows, which e...
Panel methods are commonly used in computational fluid dynamics for the solution of potential flow p...
Abstract. Higher order panel methods are used to solve the Laplace equation in the presence of compl...
A high-order panel code capable of solving the potential flow equation about arbitrary curved geomet...
The original idea by Rokhlin (1985) to rapidly solve the Laplace equation is applied here for studyi...
The original idea by Rokhlin (1985) to rapidly solve the Laplace equation is applied here for studyi...
A fast, linear scaling vortex method is presented to study inviscid incompressible flow problems inv...
Realistic applications of panel methods of computational13; aerodynamics represent the aerodynamic c...
The panel method is a potential-flow numerical approach that shows valuable performances to solve ae...
We present a new fast multipole method for particle simulations. The main feature of our algorithm i...
A comprehensive description of panel methods has been given to enable an understanding of the underl...
A fast multilevel integral transform method has been developed that enables the rapid analysis of un...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2006....
An improved panel method has been developed to calculate compressible inviscid flow through a turbin...
Thesis (Ph.D.)--Boston UniversityBoundary element methods (BEM) have been used for years to solve a ...
Abstract. A new two-dimensional panel technique has been developed to solve Laplacian flows, which e...
Panel methods are commonly used in computational fluid dynamics for the solution of potential flow p...
Abstract. Higher order panel methods are used to solve the Laplace equation in the presence of compl...
A high-order panel code capable of solving the potential flow equation about arbitrary curved geomet...
The original idea by Rokhlin (1985) to rapidly solve the Laplace equation is applied here for studyi...
The original idea by Rokhlin (1985) to rapidly solve the Laplace equation is applied here for studyi...
A fast, linear scaling vortex method is presented to study inviscid incompressible flow problems inv...
Realistic applications of panel methods of computational13; aerodynamics represent the aerodynamic c...
The panel method is a potential-flow numerical approach that shows valuable performances to solve ae...
We present a new fast multipole method for particle simulations. The main feature of our algorithm i...
A comprehensive description of panel methods has been given to enable an understanding of the underl...
A fast multilevel integral transform method has been developed that enables the rapid analysis of un...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Aeronautics and Astronautics, 2006....
An improved panel method has been developed to calculate compressible inviscid flow through a turbin...
Thesis (Ph.D.)--Boston UniversityBoundary element methods (BEM) have been used for years to solve a ...