Numerical simulation of stratified flows usingOpenFOAM package

The paper is devoted to construction of a numerical model and computations of continuously stratified fluid flows in field of external mass forces accounting for dissipative factors, viscosity and diffusion. Mathematical model is based on the fundamental set of differential equations of inhomogeneou...

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Main Authors: N. F. Dimitrieva, Ya. V. Zagumennyi
Format: Article
Language:English
Published: Ivannikov Institute for System Programming of the Russian Academy of Sciences 2018-10-01
Series:Труды Института системного программирования РАН
Subjects:
Online Access:https://ispranproceedings.elpub.ru/jour/article/view/843
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spelling doaj-649b80a1737145f29f1f3fe52b5060942020-11-25T02:54:57Zeng Ivannikov Institute for System Programming of the Russian Academy of SciencesТруды Института системного программирования РАН2079-81562220-64262018-10-0126518720010.15514/ISPRAS-2014-26(5)-10843Numerical simulation of stratified flows usingOpenFOAM packageN. F. Dimitrieva0Ya. V. Zagumennyi1ИПМех РАНИГМНАНУThe paper is devoted to construction of a numerical model and computations of continuously stratified fluid flows in field of external mass forces accounting for dissipative factors, viscosity and diffusion. Mathematical model is based on the fundamental set of differential equations of inhomogeneous multicomponent fluid mechanics. Solution of the problem is constructed numerically in the completenon-linear formulation using finite volume method in frame of the open source package OpenFOAM. To take in to account the stratification and diffusion effects a new own solver, stratifiedFoam, was developed and tested using the standard and extended libraries of the package. A particular attention is focused at construction of a high quality computational grid which satisfies basic requirements for resolution of all the microscales of the problem in high-gradient regions of the flow. The calculations performed in parallel regime on computational facilities of the web-laboratory UniHUB demonstrated a pretty high efficiency of the proposed numerical model and a good agreement with the experimental data.https://ispranproceedings.elpub.ru/jour/article/view/843численное моделированиеоткрытые вычислительные пакетыстратифицированные течения
collection DOAJ
language English
format Article
sources DOAJ
author N. F. Dimitrieva
Ya. V. Zagumennyi
spellingShingle N. F. Dimitrieva
Ya. V. Zagumennyi
Numerical simulation of stratified flows usingOpenFOAM package
Труды Института системного программирования РАН
численное моделирование
открытые вычислительные пакеты
стратифицированные течения
author_facet N. F. Dimitrieva
Ya. V. Zagumennyi
author_sort N. F. Dimitrieva
title Numerical simulation of stratified flows usingOpenFOAM package
title_short Numerical simulation of stratified flows usingOpenFOAM package
title_full Numerical simulation of stratified flows usingOpenFOAM package
title_fullStr Numerical simulation of stratified flows usingOpenFOAM package
title_full_unstemmed Numerical simulation of stratified flows usingOpenFOAM package
title_sort numerical simulation of stratified flows usingopenfoam package
publisher Ivannikov Institute for System Programming of the Russian Academy of Sciences
series Труды Института системного программирования РАН
issn 2079-8156
2220-6426
publishDate 2018-10-01
description The paper is devoted to construction of a numerical model and computations of continuously stratified fluid flows in field of external mass forces accounting for dissipative factors, viscosity and diffusion. Mathematical model is based on the fundamental set of differential equations of inhomogeneous multicomponent fluid mechanics. Solution of the problem is constructed numerically in the completenon-linear formulation using finite volume method in frame of the open source package OpenFOAM. To take in to account the stratification and diffusion effects a new own solver, stratifiedFoam, was developed and tested using the standard and extended libraries of the package. A particular attention is focused at construction of a high quality computational grid which satisfies basic requirements for resolution of all the microscales of the problem in high-gradient regions of the flow. The calculations performed in parallel regime on computational facilities of the web-laboratory UniHUB demonstrated a pretty high efficiency of the proposed numerical model and a good agreement with the experimental data.
topic численное моделирование
открытые вычислительные пакеты
стратифицированные течения
url https://ispranproceedings.elpub.ru/jour/article/view/843
work_keys_str_mv AT nfdimitrieva numericalsimulationofstratifiedflowsusingopenfoampackage
AT yavzagumennyi numericalsimulationofstratifiedflowsusingopenfoampackage
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