DocumentCode :
2503092
Title :
Scalable Time-Parallelization of Molecular Dynamics Simulations in Nano Mechanics
Author :
Yu, Yanan ; Srinivasan, Ashok ; Chandra, Namas
Author_Institution :
Dept. of Comput. Sci., Florida State Univ., Tallahassee, FL
fYear :
2006
fDate :
14-18 Aug. 2006
Firstpage :
119
Lastpage :
126
Abstract :
Molecular dynamics (MD) is an important atomistic simulation technique, with widespread use in computational chemistry, biology, and materials. An important limitation of MD is that the time step size is small, requiring a large number of iterations to simulate realistic time spans. Conventional parallelization is not very effective for this. We recently introduced a new approach to parallelization, where data from related prior simulations are used to parallelize a new computation along the time domain. In our prior work, the size of the physical system in the current simulation needed to be identical to that of the prior simulations. The significance of this paper lies in demonstrating a strategy that enables this approach to be used even when the physical systems differ in size. Furthermore, this method scaled up to almost 1000 processors with close to ideal speedup in one case, where conventional methods scale to only 2-3 processors
Keywords :
chemistry computing; molecular dynamics method; parallel processing; atomistic simulation; molecular dynamics simulation; nano mechanics; realistic time span simulation; scalable time parallelization; time step size; Biological system modeling; Biology computing; Computational efficiency; Computational modeling; Computer science; Concurrent computing; Mechanical engineering; Nanobioscience; Physics computing; Predictive models;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Parallel Processing, 2006. ICPP 2006. International Conference on
Conference_Location :
Columbus, OH
ISSN :
0190-3918
Print_ISBN :
0-7695-2636-5
Type :
conf
DOI :
10.1109/ICPP.2006.64
Filename :
1690612
Link To Document :
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