Browse > Article
http://dx.doi.org/10.3795/KSME-B.2005.29.12.1299

A Study About Critical Flow Characteristics and the Pipeline Network Modeling of a Pressure Regulator (II) - The Influence of a Opening Ratio -  

Shin Chang Hoon (한국가스공사 연구개발원)
Ha Jong Man (한국가스공사 연구개발원)
Lee Cheol Gu (한국가스공사 연구개발원)
Her Jae Young (한국가스공사 연구개발원)
Im Ji Hyun (연세대학교 기계공학부)
Joo Won Gu (연세대학교 기계공학부)
Publication Information
Transactions of the Korean Society of Mechanical Engineers B / v.29, no.12, 2005 , pp. 1299-1306 More about this Journal
Abstract
The suitable pressure regulator modeling at each opening ratio and pressure ratio is very important to obtain reliable results, especially in small scale pipeline network analysis such as a pressure regulator system. And it is needed to confirm both whether temperature recovery is achieved after passing by the pressure regulator's narrow neck and how much amount of low temperature area that can cause condensate accumulation is distributed by various PCV models and driving conditions. In this research, the numerical model resembling P company pressure regulator that is used widely for high pressure range in commercial, is adopted as the base model of CFD analysis to investigate pressure regulator's flow characteristics at each pressure ratio and opening ratio. And it is also introduced to examine pressure regulator's critical flow characteristics and possibility of condensation or freezing at each pressure ratio and opening ratio. Additionally, the comparison between the results of CFD analysis and the results of analytic solution obtained by compressible fluid-dynamics theory is attempted to validate the results of CFD modeling in this study and to estimate the accuracy of theoretical approach at each pressure ratio and opening ratio too.
Keywords
Pressure Regulator; Critical Flow; Pipeline Network; Opening Ratio; Numerical Analysis; CFD;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Pietro Fiorentini$^{\circledR}$, 2001, 'PRESSURE REGULATOR Manual.'
2 Streeter, V. L. and Wylie, E. B., 1975, 'Fluid Mechanics,' 6th ed., McGraw-Hill, New York
3 Flow Master Co., 2004, 'Flow-Master2 Manual.'
4 Frank. M. White, 1987, 'Fluid Dynamics.'
5 Robert P. Benedict, 1985, 'Fundamentals of Pipe Flow,' Wiley
6 Shapiro, A. H., 1953, 'The Dynamics and Thermodynamics of Compressible Fluid Flow,' Ronald, New York
7 Fluent Inc., 2003, 'FLUENT 6.1 User's Guide.'