NASA NTRS · 19960001210
Two-dimensional mesh embedding for Galerkin B-spline methods
Abstract
A number of advantages result from using B-splines as basis functions in a Galerkin method for solving partial differential equations. Among them are arbitrary order of accuracy and high resolution similar to that of compact schemes but without the aliasing error. This work develops another property, namely, the ability to treat semi-structured embedded or zonal meshes for two-dimensional geometries. This can drastically reduce the number of grid points in many applications. Both integer and non-integer refinement ratios are allowed. The report begins by developing an algorithm for choosing basis functions that yield the desired mesh resolution. These functions are suitable products of one-dimensional B-splines. Finally, test cases for linear scalar equations such as the Poisson and advection equation are presented. The scheme is conservative and has uniformly high order of accuracy throughout the domain.
Keep this discovery
Explore connections, maps & timelines
Shariff, Karim, Moser, Robert D.. 1995-08-01. Two-dimensional mesh embedding for Galerkin B-spline methods. https://ntrs.nasa.gov/citations/19960001210
Cite the original work for its findings. Save a collection to share your selection of sources.