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Matem. Mod., 2015, Volume 27, Number 3, Pages 109–120 (Mi mm3585)  

This article is cited in 8 scientific papers (total in 8 papers)

Operator library for solving multidimensional mathematical physics problems on CUDA

M. M. Krasnov

Keldysh Institute of Applied Mathematics of RAS, Moscow

Abstract: This paper describes a library of operators to work with grid functions, aimed to simplify the calculations on three-dimensional index grids. The library is designed so that the details of its implementation are hidden from the user, allowing effective implementation on machines with different architectures (parallel, hybrid, etc.). The library creation raises several goals: the approximation of the appearance of the program to the theoretical formulas, the relative ease of use, including the work on the graphics card with CUDA architecture, computational efficiency.

Keywords: grid functions, grid operators, grid evaluators, heterogeneous systems, CUDA.

Full text: PDF file (339 kB)
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Document Type: Article
UDC: 519.6
Received: 17.02.2014

Citation: M. M. Krasnov, “Operator library for solving multidimensional mathematical physics problems on CUDA”, Matem. Mod., 27:3 (2015), 109–120

Citation in format AMSBIB
\Bibitem{Kra15}
\by M.~M.~Krasnov
\paper Operator library for solving multidimensional mathematical physics problems on CUDA
\jour Matem. Mod.
\yr 2015
\vol 27
\issue 3
\pages 109--120
\mathnet{http://mi.mathnet.ru/mm3585}
\elib{http://elibrary.ru/item.asp?id=23421486}


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    Citing articles on Google Scholar: Russian citations, English citations
    Related articles on Google Scholar: Russian articles, English articles

    This publication is cited in the following articles:
    1. M. M. Krasnov, “Optimalnyi parallelnyi algoritm obkhoda tochek giperploskosti fronta vychislenii i ego sravnenie s drugimi iteratsionnymi metodami resheniya setochnykh uravnenii”, Preprinty IPM im. M. V. Keldysha, 2015, 020, 20 pp.  mathnet
    2. V. T. Zhukov, M. M. Krasnov, N. D. Novikova, O. B. Feodoritova, “Chislennoe reshenie parabolicheskikh uravnenii na lokalno-adaptivnykh setkakh chebyshevskim metodom”, Preprinty IPM im. M. V. Keldysha, 2015, 087, 26 pp.  mathnet
    3. Krasnyuk I.B., “Surface-directed multi-dimensional wave structures in confined binary mixtures”, Int . J. Comput. Mat. Sci. Eng., 4:4 (2015), 1550023  crossref  mathscinet  isi
    4. M. M. Krasnov, M. E. Ladonkina, V. F. Tishkin, “Razryvnyi metod Galërkina na trëkhmernykh tetraedralnykh setkakh. Ispolzovanie operatornogo metoda programmirovaniya”, Preprinty IPM im. M. V. Keldysha, 2016, 023, 27 pp.  mathnet
    5. M. M. Krasnov, M. E. Ladonkina, “Razryvnyi metod Galërkina na trëkhmernykh tetraedralnykh setkakh. Primenenie shablonnogo metaprogrammirovaniya yazyka C++”, Preprinty IPM im. M. V. Keldysha, 2016, 024, 23 pp.  mathnet
    6. M. M. Krasnov, P. A. Kuchugov, M. E. Ladonkina, V. F. Tishkin, “Discontinuous Galerkin method on three-dimensional tetrahedral meshes. The usage of the operator programming method”, Math. Models Comput. Simul., 9:5 (2017), 529–543  mathnet  crossref  elib
    7. A. V. Sentyabov, A. A. Gavrilov, S. A. Grizan, A. A. Dekterev, D. V. Boikov, “Effektivnost raschetov na graficheskikh protsessorakh v vychislitelnoi gidrodinamike neszhimaemoi zhidkosti”, Matem. modelirovanie, 29:3 (2017), 16–28  mathnet  elib
    8. M. M. Krasnov, M. E. Ladonkina, V. F. Tishkin, “Realizatsiya razryvnogo metoda Galërkina v programmnom komplekse DGM”, Preprinty IPM im. M. V. Keldysha, 2018, 245, 31 pp.  mathnet  crossref
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