Formulation and Optimization of Load Imbalance in the Hybrid Atomistic-Continuum Simulation Based on Geometric Coupling release_q5x7766omnhrndcahy65tultsy

by Qian Wang, Xin-Hai Xu, Li-Yang Xu, Juan Chen

References

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[b0]

via grobid
O'Connell, S.T., Thompson, P.A.: Molecular dynamics-continuum hybrid computations: A tool for studying complex fluid flows. Phys Rev E Stat Phys Plasmas Fluids Relat Interdiscip Topics 52, R5792-R5795 (1995)
[b1]

via grobid
Sun, J., He, Y.L., Tao, W.Q., Yin, X., Wang, H.S.: Roughness effect on flow and thermal boundaries in microchannel/nanochannel flow using molecular dynamics-continuum hybrid simulation. International Journal for Numerical Methods in Engineering 89, 2-19 (2012)
[b2]

via grobid
Nie, X., Chen, S., Robbins, M.O.: Hybrid continuum-atomistic simulation of singular corner flow. Physics of Fluids (1994-present) 16, 3579-3591 (2004)
[b3]

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Squires, T.M., Quake, S.R.: Microfluidics: Fluid physics at the nanoliter scale. Rev Mod Phys 77, 977-1026 (2005)
[b4]

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Investigation of load imbalance in the hybrid atomistic-continuum simulation based on geometric coupling
Qian Wang, Xiaoguang Ren, Chao Li, Wenjing Yang
2016   Proceedings of the 2016 International Conference on Innovative Material Science and Technology (IMST 2016)  unpublished
doi:10.2991/imst-16.2016.33 
web.archive.org [PDF]
[b5]

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Plimpton, S.: Fast Parallel Algorithms for Short-Range Molecular Dynamics. Journal of Computational Physics 117, 1-19 (1995)
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WI-USHER: A grid-based parallel algorithm for particle insertion in hybrid atomistic-continuum method
Qian Wang, Xin-Hai Xu, Shuai Ye, Chao Li, Xiao-Guang Ren, Xue-Jun Yang
2017   Advances in Mechanical Engineering
doi:10.1177/1687814017691895