Scalability of an Unstructured Grid Continuous Galerkin Based Hurricane Storm Surge Model

被引:0
|
作者
S. Tanaka
S. Bunya
J. J. Westerink
C. Dawson
R. A. Luettich
机构
[1] University of Notre Dame,Environmental Fluid Dynamics Laboratories, Department of Civil Engineering and Geological Sciences
[2] Mitsubishi Research Institute,Science and Safety Policy Research Division
[3] Inc.,Institute for Computational Engineering and Sciences
[4] The University of Texas at Austin,Institute of Marine Sciences
[5] University of North Carolina at Chapel Hill,undefined
来源
关键词
Parallel computing; Scaling; Shallow water equations; Hurricane storm surge model; Finite element method; Forecasting;
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学科分类号
摘要
This paper evaluates the parallel performance and scalability of an unstructured grid Shallow Water Equation (SWE) hurricane storm surge model. We use the ADCIRC model, which is based on the generalized wave continuity equation continuous Galerkin method, within a parallel computational framework based on domain decomposition and the MPI (Message Passing Interface) library. We measure the performance of the model run implicitly and explicitly on various grids. We analyze the performance as well as accuracy with various spatial and temporal discretizations. We improve the output writing performance by introducing sets of dedicated writer cores. Performance is measured on the Texas Advanced Computing Center Ranger machine. A high resolution 9,314,706 finite element node grid with 1 s time steps can complete a day of real time hurricane storm surge simulation in less than 20 min of computer wall clock time, using 16,384 cores with sets of dedicated writer cores.
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页码:329 / 358
页数:29
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