A new family of solvers for some classes of multidimensional partial differential equations encountered in kinetic theory modelling of complex fluids - Part II: Transient simulation using space-time separated representations

Ammar, A.;Mokdad, B.;Chinesta, F.;Keunings, Roland
(2007) Journal of Non-Newtonian Fluid Mechanics — Vol. 144, n° 2-3, p. 98-121 (2007)

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Authors
  • Ammar, A.
    Author
  • Mokdad, B.
    Author
  • Chinesta, F.
    Author
  • Keunings, RolandUCLouvain
    Author
Abstract
Kinetic theory models described within the Fokker-Planck formalism involve high-dimensional spaces (including physical and conformation spaces and time). One appealing strategy for treating this kind of problems lies in the use of separated representations and tensor product approximations basis. This technique that was introduced in a former work [A. Ammar, B. Mokdad, E Chinesta, R. Keunings, A new family of solvers for some classes of multidimensional partial differential equations encountered in kinetic theory modeling of complex fluids, J. Non-Newtonian Fluid Mech. 139 (2006) 153-176] for treating steady state kinetic theory models is extended here for treating transient models. (c) 2007 Elsevier B.V. All rights reserved.
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Citations

Ammar, A., Mokdad, B., Chinesta, F., & Keunings, R. (2007). A new family of solvers for some classes of multidimensional partial differential equations encountered in kinetic theory modelling of complex fluids - Part II: Transient simulation using space-time separated representations. Journal of Non-Newtonian Fluid Mechanics, 144(2-3), 98-121. https://doi.org/10.1016/j.jnnfm.2007.03.009 (Original work published 2007)