High-performance supercomputer technologies of simulation and identification of nanoporous systems with feedback for n-component competitive adsorption / Petryk, / Boyko, / Khimich, / Petryk. (2021)
Ukrainian

English  Cybernetics and Systems Analysis   /     Issue (2021, 57 (2))

Petryk M.R., Boyko I.V., Khimich O.M., Petryk M.M.
High-performance supercomputer technologies of simulation and identification of nanoporous systems with feedback for n-component competitive adsorption

High-performance supercomputer computing technologies have been developed to model and identify the parameters of complex n-component competitive adsorption processes in nanoporous cybersystems with feedback. Using the Laplace transform and the Heaviside operating method with the decomposition of a nonlinear system with Langmuir-type adsorption equilibrium conditions, an efficient parallelization of the vector components of the model solution is proposed. The results of numerical experiments based on parallel computations using multicore computers are presented. © 2021, Springer Science+Business Media, LLC, part of Springer Nature.

Keywords: competitive gas adsorption, Heaviside operating method, high-performance parallel computations, Langmuir adsorption equilibrium function, Laplace integral transform, nanoporous cybersystems with feedback, Laplace transforms, Supercomputers, Competitive adsorption, Computing technology, Langmuir-type adsorption, Nanoporous system, Numerical experiments, Parallel Computation, Supercomputer technologies, Vector components, Adsorption


Cite:
Petryk M.R., Boyko I.V., Khimich O.M., Petryk M.M. (2021). High-performance supercomputer technologies of simulation and identification of nanoporous systems with feedback for n-component competitive adsorption. Cybernetics and Systems Analysis, 57 (2), 170–183. doi: https://doi.org/10.1007/s10559-021-00357-7 http://jnas.nbuv.gov.ua/article/UJRN-0001221032 [In Ukrainian].


 

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