가스 파이프라인용 볼 밸브의 수치해석 모델 평가

This paper presents on the evaluation of numerical analysis model of a ball valve used for a gas pipeline. The ball valve has important role to control the gas flow of the pipeline as well as safety operation to prevent gas explosion at the emergency. For the validation of numerical simulation, the...

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Published in한국수소 및 신에너지학회 논문집 Vol. 27; no. 6; pp. 764 - 772
Main Authors 임태균(Tae-gyun Lim), 장춘만(Choon-man Jang), 김철규(Chul-kyu Kim), 이경근(Kyoung-keun Lee)
Format Journal Article
LanguageKorean
Published 한국수소및신에너지학회 2016
Subjects
Online AccessGet full text
ISSN1738-7264
2288-7407
DOI10.7316/KHNES.2016.27.6.764

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Abstract This paper presents on the evaluation of numerical analysis model of a ball valve used for a gas pipeline. The ball valve has important role to control the gas flow of the pipeline as well as safety operation to prevent gas explosion at the emergency. For the validation of numerical simulation, the computational domains are introduced three different types: a hexahedron chamber connected to a pipeline outlet without considering the geometry of pressure tubes, a pipeline only considered the geometry of pressure tubes, and a pipeline connected both of the a hexahedron chamber and pressure tubes. The commercial code, SC/Tetra, is introduced to solve the three-dimensional steady-state Reynolds-averaged Navier-Stokes analysis in the present study. The valve flow coefficient and valve loss coefficient with respect to the valve opening rate of 30%, 50%, and 70% are compared with experimental results. Throughout the numerical analysis for the three analysis domains, pressure computed along the pipeline is affected by computational domains. It is noted pressure obtained by the computational model considering both of the a hexahedron chamber and pressure tubes has a relatively good agreement to the experimental data.
AbstractList This paper presents on the evaluation of numerical analysis model of a ball valve used for a gaspipeline. The ball valve has important role to control the gas flow of the pipeline as well as safety operationto prevent gas explosion at the emergency. For the validation of numerical simulation, the computational domainsare introduced three different types: a hexahedron chamber connected to a pipeline outlet without considering thegeometry of pressure tubes, a pipeline only considered the geometry of pressure tubes, and a pipeline connectedboth of the a hexahedron chamber and pressure tubes. The commercial code, SC/Tetra, is introduced to solve thethree-dimensional steady-state Reynolds-averaged Navier-Stokes analysis in the present study. The valve flowcoefficient and valve loss coefficient with respect to the valve opening rate of 30%, 50%, and 70% are comparedwith experimental results. Throughout the numerical analysis for the three analysis domains, pressure computedalong the pipeline is affected by computational domains. It is noted pressure obtained by the computational modelconsidering both of the a hexahedron chamber and pressure tubes has a relatively good agreement to theexperimental data. KCI Citation Count: 2
This paper presents on the evaluation of numerical analysis model of a ball valve used for a gas pipeline. The ball valve has important role to control the gas flow of the pipeline as well as safety operation to prevent gas explosion at the emergency. For the validation of numerical simulation, the computational domains are introduced three different types: a hexahedron chamber connected to a pipeline outlet without considering the geometry of pressure tubes, a pipeline only considered the geometry of pressure tubes, and a pipeline connected both of the a hexahedron chamber and pressure tubes. The commercial code, SC/Tetra, is introduced to solve the three-dimensional steady-state Reynolds-averaged Navier-Stokes analysis in the present study. The valve flow coefficient and valve loss coefficient with respect to the valve opening rate of 30%, 50%, and 70% are compared with experimental results. Throughout the numerical analysis for the three analysis domains, pressure computed along the pipeline is affected by computational domains. It is noted pressure obtained by the computational model considering both of the a hexahedron chamber and pressure tubes has a relatively good agreement to the experimental data.
Author 임태균(Tae-gyun Lim)
이경근(Kyoung-keun Lee)
김철규(Chul-kyu Kim)
장춘만(Choon-man Jang)
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DocumentTitleAlternate Evaluation of Numerical Model of a Ball Valve used for a Gas Pip
DocumentTitle_FL Evaluation of Numerical Model of a Ball Valve used for a Gas Pipeline
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Keywords 전산유체역학
가스 파이프라인
Gas pipeline
Computational fluid dynamics
밸브 유량계수
수치 모델
Numerical model
Computational domain
볼 밸브
해석 도메인
Ball valve
Valve flow coefficient
Language Korean
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PublicationTitle 한국수소 및 신에너지학회 논문집
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Snippet This paper presents on the evaluation of numerical analysis model of a ball valve used for a gas pipeline. The ball valve has important role to control the gas...
This paper presents on the evaluation of numerical analysis model of a ball valve used for a gaspipeline. The ball valve has important role to control the gas...
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SubjectTerms 기계공학
Title 가스 파이프라인용 볼 밸브의 수치해석 모델 평가
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