NASA NTRS ยท 19930029990
Efficient computation of inviscid flow fields around complex configurations using a multiblock multigrid method
Abstract
The applicability of a multigrid technique to block-structured, body-fitted meshes is examined focusing on three different strategies. In the first strategy data are exchanged between blocks in each stage of a five-stage Runge-Kutta time-stepping scheme which keeps a possible time lag between blocks to a minimum, but requires a large amount of I/O operations and storage. The second strategy is based on performing a complete Runge-Kutta cycle within a block before switching to the next. In the third strategy both a complete Runge-Kutta cycle and the residual evaluation for the restriction operator are done within a block, allowing a minimum of I/O and storage. The inviscid flow around a wing-body/engine-pylon configuration was computed on a mesh consisting of 11 computational blocks. It was found that both the first and the second strategies delivered converged results, but the third failed due to larger time lag between blocks.
Keep this discovery
Explore connections, maps & timelines
Rossow, C.-C.. 1992-10-01. Efficient computation of inviscid flow fields around complex configurations using a multiblock multigrid method. https://ntrs.nasa.gov/citations/19930029990
Cite the original work for its findings. Save a collection to share your selection of sources.