Matches in SemOpenAlex for { <https://semopenalex.org/work/W3032504815> ?p ?o ?g. }
- W3032504815 endingPage "158" @default.
- W3032504815 startingPage "133" @default.
- W3032504815 abstract "OpenCAL is a scientific software library specifically developed for the simulation of 2D and 3D complex dynamical systems on parallel computational devices. It is written in C/C++ and relies on OpenMP/OpenCL and MPI for parallel execution on multi-/many-core devices and clusters of computers, respectively. The library provides the Extended Cellular Automata paradigm as a high-level formalism for modeling complex systems on structured computational grids. As a consequence, it can be used as a parallel explicit solver of ordinary and partial differential equations through classical methods, including finite-difference and finite-volume. Here the latest version of the library is described, introducing the MPI infrastructure over the 3D OpenCL and 2D/3D OpenMP components. The implementation of a three-dimensional unsaturated flow model based on a direct discrete formulation of the Richards’ equation is also shown, corresponding to a finite-difference scheme. Computational performances have been assessed on both a scientific workstation equipped with a dual Intel Xeon socket and three Nvidia GPUs, and a 16 nodes cluster with a fast interconnection network. The OpenCAL embedded quantization optimization is also discussed and exploited to drastically reduce computing time." @default.
- W3032504815 created "2020-06-05" @default.
- W3032504815 creator A5035085461 @default.
- W3032504815 creator A5043745299 @default.
- W3032504815 creator A5055436317 @default.
- W3032504815 creator A5059621771 @default.
- W3032504815 creator A5069199781 @default.
- W3032504815 creator A5069640825 @default.
- W3032504815 creator A5077855107 @default.
- W3032504815 creator A5084381144 @default.
- W3032504815 date "2021-01-01" @default.
- W3032504815 modified "2023-09-26" @default.
- W3032504815 title "OpenCAL system extension and application to the three-dimensional Richards equation for unsaturated flow" @default.
- W3032504815 cites W1199499276 @default.
- W3032504815 cites W1605026998 @default.
- W3032504815 cites W1647429281 @default.
- W3032504815 cites W1924017634 @default.
- W3032504815 cites W1963605887 @default.
- W3032504815 cites W1968928233 @default.
- W3032504815 cites W1972009569 @default.
- W3032504815 cites W1989157909 @default.
- W3032504815 cites W1991497371 @default.
- W3032504815 cites W1992091294 @default.
- W3032504815 cites W2000759575 @default.
- W3032504815 cites W2001024377 @default.
- W3032504815 cites W2001235138 @default.
- W3032504815 cites W2002388379 @default.
- W3032504815 cites W2010197821 @default.
- W3032504815 cites W2014786311 @default.
- W3032504815 cites W2020433245 @default.
- W3032504815 cites W2035157815 @default.
- W3032504815 cites W2038193820 @default.
- W3032504815 cites W2040259398 @default.
- W3032504815 cites W2045830327 @default.
- W3032504815 cites W2047657213 @default.
- W3032504815 cites W2048568378 @default.
- W3032504815 cites W2054542711 @default.
- W3032504815 cites W2057990809 @default.
- W3032504815 cites W2059602940 @default.
- W3032504815 cites W2075480840 @default.
- W3032504815 cites W2075696448 @default.
- W3032504815 cites W2078794610 @default.
- W3032504815 cites W2082478155 @default.
- W3032504815 cites W2083221024 @default.
- W3032504815 cites W2090539004 @default.
- W3032504815 cites W2093996191 @default.
- W3032504815 cites W2099370652 @default.
- W3032504815 cites W2099815783 @default.
- W3032504815 cites W2113626384 @default.
- W3032504815 cites W2120900954 @default.
- W3032504815 cites W2134300624 @default.
- W3032504815 cites W2157822031 @default.
- W3032504815 cites W2158186004 @default.
- W3032504815 cites W2168500959 @default.
- W3032504815 cites W2293808070 @default.
- W3032504815 cites W2344613282 @default.
- W3032504815 cites W2524889855 @default.
- W3032504815 cites W2532971843 @default.
- W3032504815 cites W2609231396 @default.
- W3032504815 cites W2744830299 @default.
- W3032504815 cites W2805321905 @default.
- W3032504815 cites W2884500922 @default.
- W3032504815 cites W2892877986 @default.
- W3032504815 cites W2902797520 @default.
- W3032504815 cites W2922952857 @default.
- W3032504815 cites W2949245897 @default.
- W3032504815 cites W4255162882 @default.
- W3032504815 cites W1869383536 @default.
- W3032504815 doi "https://doi.org/10.1016/j.camwa.2020.05.017" @default.
- W3032504815 hasPublicationYear "2021" @default.
- W3032504815 type Work @default.
- W3032504815 sameAs 3032504815 @default.
- W3032504815 citedByCount "15" @default.
- W3032504815 countsByYear W30325048152020 @default.
- W3032504815 countsByYear W30325048152021 @default.
- W3032504815 countsByYear W30325048152022 @default.
- W3032504815 countsByYear W30325048152023 @default.
- W3032504815 crossrefType "journal-article" @default.
- W3032504815 hasAuthorship W3032504815A5035085461 @default.
- W3032504815 hasAuthorship W3032504815A5043745299 @default.
- W3032504815 hasAuthorship W3032504815A5055436317 @default.
- W3032504815 hasAuthorship W3032504815A5059621771 @default.
- W3032504815 hasAuthorship W3032504815A5069199781 @default.
- W3032504815 hasAuthorship W3032504815A5069640825 @default.
- W3032504815 hasAuthorship W3032504815A5077855107 @default.
- W3032504815 hasAuthorship W3032504815A5084381144 @default.
- W3032504815 hasConcept C111919701 @default.
- W3032504815 hasConcept C121332964 @default.
- W3032504815 hasConcept C134306372 @default.
- W3032504815 hasConcept C145108525 @default.
- W3032504815 hasConcept C173608175 @default.
- W3032504815 hasConcept C199360897 @default.
- W3032504815 hasConcept C2777904410 @default.
- W3032504815 hasConcept C2778770139 @default.
- W3032504815 hasConcept C33923547 @default.
- W3032504815 hasConcept C41008148 @default.
- W3032504815 hasConcept C459310 @default.
- W3032504815 hasConcept C50478463 @default.