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Distributed Database Kriging for Adaptive Sampling (D2KAS)

delete2015-07-01
delete23
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D
Dominic Roehm *
R
Robert Pavel
K
Kipton Barros
B
Bertrand Rouet‐Leduc
M
McPherson, Allen L.
T
Timothy C. Germann
C
Christoph Junghans
DOI:10.1016/j.cpc.2015.03.006delete
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Abstract

Abstract

En 中文
We present an adaptive sampling method supplemented by a distributed database and a prediction method for multiscale simulations using the Heterogeneous Multiscale Method. A finite-volume scheme integrates the macro-scale conservation laws for elastodynamics, which are closed by momentum and energy fluxes evaluated at the micro-scale. In the original approach, molecular dynamics (MD) simulations are launched for every macro-scale volume element. Our adaptive sampling scheme replaces a large fraction of costly micro-scale MD simulations with fast table lookup and prediction. The cloud database Redis provides the plain table lookup, and with locality aware hashing we gather input data for our prediction scheme. For the latter we use kriging, which estimates an unknown value and its uncertainty (error) at a specific location in parameter space by using weighted averages of the neighboring points. We find that our adaptive scheme significantly improves simulation performance by a factor of 2.5-25, while retaining high accuracy for various choices of the algorithm parameters. (C) 2015 Elsevier B.V. All rights reserved.
Keywords:
Adaptive sampling
Heterogeneous Multiscale Methods
Elastodynamics
Cloud database
Kriging
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Computer Physics Communications cover
Computer Physics Communications
IF:
3.4
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