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A Fast MHD Code for Gravitationally Stratified Media using Graphical Processing Units: SMAUG
[摘要] Parallelization techniques have been exploited most successfully by the gaming/graphics industry with the adoption of graphical processing units (GPUs), possessing hundreds of processor cores. The opportunity has been recognized by the computational sciences and engineering communities, who have recently harnessed successfully the numerical performance of GPUs. For example, parallel magnetohydrodynamic (MHD) algorithms are important for numerical modelling of highly inhomogeneous solar, astrophysical and geophysical plasmas. Here, we describe the implementation of SMAUG, the Sheffield Magnetohydrodynamics Algorithm Using GPUs. SMAUG is a 1–3D MHD code capable of modelling magnetized and gravitationally stratified plasma.The objective of this paper is to present the numerical methods and techniques used for porting the code to this novel and highly parallel compute architecture. The methods employed are justified by the performance benchmarks and validation results demonstrating that the code successfully simulates the physics for a range of test scenarios including a full 3D realistic model of wave propagation in the solar atmosphere.
[发布日期]  [发布机构] 
[效力级别]  [学科分类] 天文学(综合)
[关键词] Numerical simulations—magnetohydrodynamics—computer unified device architecture—graphical processing units—NVIDIA—Sheffield advanced code—the Sheffield magnetohydrodynamics algorithm using GPUs—versatile advection code. [时效性] 
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