Improving parallel performance of large-scale watershed simulations

Author:

Eller Paul R.,Cheng Jing-Ru C.,Nguyen Hung V.,Maier Robert S.

Publisher

Elsevier BV

Subject

General Engineering

Reference12 articles.

1. J.-R.C. Cheng, R.M. Hunter, H.-P. Cheng, D.R. Richards, G.T. Yeh, Parallelization of a watershed modelPhase III: Coupled 1-dimensional channel, 2-dimensional overland, and 3-dimensional subsurface flows, in: Computational Methods in Water Resources XVI, CMWR CDROM, paper 64, Copenhagen, Denmark, June 19-22,2006.

2. G.-T. Yeh, G. Huang, F. Zhang, H.-P. Cheng, H.-C. Lin, J.-R. Cheng, E.V. Edris, D.R. Richards, An integrated media, integrated processes watershed model—WASH123D: Part 1—model descriptions and features, in: Computational Methods in Water Resources XVI, CMWR CD-ROM, paper 29, Copenhagen, Denmark, June 19-22,2006.

3. Kinematic Wave Modeling in Water Resources;Singh,1996

4. G.-T. Yeh, H.-P. Cheng, G. Huang, F. Zhang, H.-C. Lin, E. Edris, D. Richards, A numerical model of flow, heat transfer, and salinity, sediment, and water quality transport in WAterSHed systems of 1-D stream-river network, 2-D overland regime, and 3-D subsurface media (WASH123D: Version 2.0), Tech. Rep. Draft, Engineer Research and Development Center, U.S. Army Corps of Engineers, MS (2003).

5. J.-R.C. Cheng, R.M. Hunter, H.-P. Cheng, D.R. Richards, A parallel software development for watershed simulations, in: Computational Science — ICCS 2005, The Springer Verlag Lecture Notes in Computer Science (LNCS 3514) Series, Springer, 2005, pp. 460–468.

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