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A Critical Study of Agglomerated Multigrid Methods for DiffusionAgglomerated multigrid techniques used in unstructured-grid methods are studied critically for a model problem representative of laminar diffusion in the incompressible limit. The studied target-grid discretizations and discretizations used on agglomerated grids are typical of current node-centered formulations. Agglomerated multigrid convergence rates are presented using a range of two- and three-dimensional randomly perturbed unstructured grids for simple geometries with isotropic and stretched grids. Two agglomeration techniques are used within an overall topology-preserving agglomeration framework. The results show that multigrid with an inconsistent coarse-grid scheme using only the edge terms (also referred to in the literature as a thin-layer formulation) provides considerable speedup over single-grid methods but its convergence deteriorates on finer grids. Multigrid with a Galerkin coarse-grid discretization using piecewise-constant prolongation and a heuristic correction factor is slower and also grid-dependent. In contrast, grid-independent convergence rates are demonstrated for multigrid with consistent coarse-grid discretizations. Convergence rates of multigrid cycles are verified with quantitative analysis methods in which parts of the two-grid cycle are replaced by their idealized counterparts.
Document ID
20110005564
Acquisition Source
Langley Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Nishikawa, Hiroaki
(National Inst. of Aerospace Hampton, VA, United States)
Diskin, Boris
(National Inst. of Aerospace Hampton, VA, United States)
Thomas, James L.
(NASA Langley Research Center Hampton, VA, United States)
Date Acquired
August 25, 2013
Publication Date
January 1, 2011
Subject Category
Mathematical And Computer Sciences (General)
Report/Patent Number
LF99-9141
Report Number: LF99-9141
Funding Number(s)
CONTRACT_GRANT: NNL07AA23C
CONTRACT_GRANT: NNL07AA31C
WBS: WBS 984754
Distribution Limits
Public
Copyright
Public Use Permitted.
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