Title of article :
Accelerating modified Shepard interpolated potential energy calculations using graphics processing units Original Research Article
Author/Authors :
Hong Fu، نويسنده , , Limin Zheng، نويسنده , , Minghui Yang، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2013
Pages :
5
From page :
1150
To page :
1154
Abstract :
The potential energy surfaces constructed with the modified Shepard interpolation scheme have been widely used in studies of chemical reaction dynamics. However, computational costs of interpolation increase rapidly with the size of the system and the number of data points needed to achieve a given accuracy. In this work, we present a naive Graphics Processing Unit (GPU)-accelerated algorithm for modified Shepard interpolated potential energy calculations and its implementation with the PGI CUDA Fortran language. The benchmark tests on a NVIDIA Tesla C2050 using four interpolated potential energy surfaces (one for H+H2O↔H2+OH, two for H+NH3↔H2+NH2 and one for H+CH4↔H2+CH3) demonstrated a speedup of 50-fold over the original CPU implementation on an Intel E5620 processor and the speedup increases with the system size and the number of data points. This work presents a promising GPU application in the field of chemical reaction dynamics.
Keywords :
Graphics processing unit acceleration , Chemical reactive dynamics , Potential energy surface , Modified Shepard interpolation scheme
Journal title :
Computer Physics Communications
Serial Year :
2013
Journal title :
Computer Physics Communications
Record number :
1136527
Link To Document :
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