Numerical simulation of the flow rate regulator valve using OpenFOAM

The results of methodical investigation, aimed on testing of the performances of free opensource CFD toolbox OpenFOAM in the field of simulation of hydraulic units’ dynamics using Finite Volume Method and dynamic meshes are presented. The following key features are reviewed: the choice of appropriat...

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Main Authors: V. G. Melnikova, O. S. Kotsur, G. A. Shcheglov
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:
fsi
Online Access:https://ispranproceedings.elpub.ru/jour/article/view/232
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spelling doaj-684ab83045cf46d3aebd670bf717519f2020-11-25T01:25:47Zeng Ivannikov Institute for System Programming of the Russian Academy of SciencesТруды Института системного программирования РАН2079-81562220-64262018-10-01291537010.15514/ISPRAS-2017-29(1)-4232Numerical simulation of the flow rate regulator valve using OpenFOAMV. G. Melnikova0O. S. Kotsur1G. A. Shcheglov2Федеральное государственное бюджетное образовательное учреждение высшего образования «Московский государственный технический университет имени Н.Э. Баумана (национальный исследовательский университет)» (МГТУ им. Н.Э. Баумана)Федеральное государственное бюджетное образовательное учреждение высшего образования «Московский государственный технический университет имени Н.Э. Баумана (национальный исследовательский университет)» (МГТУ им. Н.Э. Баумана)Федеральное государственное бюджетное образовательное учреждение высшего образования «Московский государственный технический университет имени Н.Э. Баумана (национальный исследовательский университет)» (МГТУ им. Н.Э. Баумана)The results of methodical investigation, aimed on testing of the performances of free opensource CFD toolbox OpenFOAM in the field of simulation of hydraulic units’ dynamics using Finite Volume Method and dynamic meshes are presented. The following key features are reviewed: the choice of appropriate algorithms managing dynamic sliding meshes; design of the model case for the FSI-problem of interaction between a moving regulating element (plunger) and power fluid; plunger dynamics simulation for the prototype of the flow rate regulator of new design; transient analysis of regulator’s internal flow; analysis of stability and computational efficiency. As the example simplified axisymmetric regulator model with incompressible power fluid is considered. The main steps of model case preparation are described. The model case is designed to simulate the problem of plunger equilibration under hydrodynamic forces and spring reaction. Results are given also for a preliminary steady-state simulation with fixed plunger, they have been used as initial conditions. Detailed description is given for the methods of mesh motion simulation, which follows plunger, as well as technology of sliding meshes (GGI), used for the piston throttle hole overlapping. Results are given for transient simulation: velocity, pressure fields, forces graphs, acting on the plunger, its displacement over time. The mechanism of jet streams and vertical flows creation in regulator’s flow channel is described. Methodical investigation, held in this paper, confirms that OpenFOAM in the “extend” version can be successfully used as an alternative for commercial CFD codes, as it contains all necessary tools to create and simulate cases incorporating dynamic meshes. It provides means for simulation of transient problems of hydraulic units which have moving parts.https://ispranproceedings.elpub.ru/jour/article/view/232численное моделированиевычислительная гидродинамикаfsiopenfoamоткрытое программное обеспечениестабилизатор расхода
collection DOAJ
language English
format Article
sources DOAJ
author V. G. Melnikova
O. S. Kotsur
G. A. Shcheglov
spellingShingle V. G. Melnikova
O. S. Kotsur
G. A. Shcheglov
Numerical simulation of the flow rate regulator valve using OpenFOAM
Труды Института системного программирования РАН
численное моделирование
вычислительная гидродинамика
fsi
openfoam
открытое программное обеспечение
стабилизатор расхода
author_facet V. G. Melnikova
O. S. Kotsur
G. A. Shcheglov
author_sort V. G. Melnikova
title Numerical simulation of the flow rate regulator valve using OpenFOAM
title_short Numerical simulation of the flow rate regulator valve using OpenFOAM
title_full Numerical simulation of the flow rate regulator valve using OpenFOAM
title_fullStr Numerical simulation of the flow rate regulator valve using OpenFOAM
title_full_unstemmed Numerical simulation of the flow rate regulator valve using OpenFOAM
title_sort numerical simulation of the flow rate regulator valve using openfoam
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 results of methodical investigation, aimed on testing of the performances of free opensource CFD toolbox OpenFOAM in the field of simulation of hydraulic units’ dynamics using Finite Volume Method and dynamic meshes are presented. The following key features are reviewed: the choice of appropriate algorithms managing dynamic sliding meshes; design of the model case for the FSI-problem of interaction between a moving regulating element (plunger) and power fluid; plunger dynamics simulation for the prototype of the flow rate regulator of new design; transient analysis of regulator’s internal flow; analysis of stability and computational efficiency. As the example simplified axisymmetric regulator model with incompressible power fluid is considered. The main steps of model case preparation are described. The model case is designed to simulate the problem of plunger equilibration under hydrodynamic forces and spring reaction. Results are given also for a preliminary steady-state simulation with fixed plunger, they have been used as initial conditions. Detailed description is given for the methods of mesh motion simulation, which follows plunger, as well as technology of sliding meshes (GGI), used for the piston throttle hole overlapping. Results are given for transient simulation: velocity, pressure fields, forces graphs, acting on the plunger, its displacement over time. The mechanism of jet streams and vertical flows creation in regulator’s flow channel is described. Methodical investigation, held in this paper, confirms that OpenFOAM in the “extend” version can be successfully used as an alternative for commercial CFD codes, as it contains all necessary tools to create and simulate cases incorporating dynamic meshes. It provides means for simulation of transient problems of hydraulic units which have moving parts.
topic численное моделирование
вычислительная гидродинамика
fsi
openfoam
открытое программное обеспечение
стабилизатор расхода
url https://ispranproceedings.elpub.ru/jour/article/view/232
work_keys_str_mv AT vgmelnikova numericalsimulationoftheflowrateregulatorvalveusingopenfoam
AT oskotsur numericalsimulationoftheflowrateregulatorvalveusingopenfoam
AT gashcheglov numericalsimulationoftheflowrateregulatorvalveusingopenfoam
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