Operator-splitting and Lagrange multiplier domain decomposition methods for numerical simulation of two coupled Navier-Stokes fluids
Bresch, Didier ; Koko, Jonas
International Journal of Applied Mathematics and Computer Science, Tome 16 (2006), p. 419-429 / Harvested from The Polish Digital Mathematics Library

We present a numerical simulation of two coupled Navier-Stokes flows, using ope-rator-split-ting and optimization-based non-overlapping domain decomposition methods. The model problem consists of two Navier-Stokes fluids coupled, through a common interface, by a nonlinear transmission condition. Numerical experiments are carried out with two coupled fluids; one with an initial linear profile and the other in rest. As expected, the transmission condition generates a recirculation within the fluid in rest.

Publié le : 2006-01-01
EUDML-ID : urn:eudml:doc:207803
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     author = {Bresch, Didier and Koko, Jonas},
     title = {Operator-splitting and Lagrange multiplier domain decomposition methods for numerical simulation of two coupled Navier-Stokes fluids},
     journal = {International Journal of Applied Mathematics and Computer Science},
     volume = {16},
     year = {2006},
     pages = {419-429},
     zbl = {1119.35346},
     language = {en},
     url = {http://dml.mathdoc.fr/item/bwmeta1.element.bwnjournal-article-amcv16i4p419bwm}
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Bresch, Didier; Koko, Jonas. Operator-splitting and Lagrange multiplier domain decomposition methods for numerical simulation of two coupled Navier-Stokes fluids. International Journal of Applied Mathematics and Computer Science, Tome 16 (2006) pp. 419-429. http://gdmltest.u-ga.fr/item/bwmeta1.element.bwnjournal-article-amcv16i4p419bwm/

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