A Fundamental Study on Offshore Structures of high pressure control valve

해양구조물용 고압 컨트롤 밸브에 대한 기초 연구

  • 이치우 (진주산업대학교 자동차공학과) ;
  • 장성철 (한국폴리텍항공대학 항공메카트로닉스과)
  • Received : 2010.10.05
  • Accepted : 2010.11.25
  • Published : 2010.12.15

Abstract

This study have goal with conceptual design for Offshore Structures of high pressure control valve for localization. Ball valve for development accomplished with flow analysis based on provision of ANSI B16.34, ANSI B16.10, ANSI B16.25 In order to localize the Offshore Structures high pressure control valve. Numerical simulation using CFD (Computational Fluid Dynamic) in order to predict a mass flow rate and a flow coefficient form flow dynamic point of view. The working fluid assumed the glycerin (C3H8O3). The valve inlet and outlet setup a pressure boundary condition. The outlet pressure was fixed by atmospheric pressure and calculated until increasing 1bar to 10bar. CFD analysis used STAR-CCM+ which is commercial code and Governing equations were calculated by moving mesh which is rotated 90 degrees when ball valve operated opening and closing in 1 degree interval. The result shows change of mass flow rate according to opening and closing angle of valve, Flow decrease observed open valve that equal percentage flow paten which is general inclination of ball valve. Relation with flow and flow coefficient can not be proportional according to inlet pressure when compare with mass flow rate. Because flow coefficient have influence in flow and pressure difference. Namely, flow can be change even if it has same Cv value. The structural analysis used ANSYS which is a commercial code. Stress analysis result of internal pressure in valve showed lower than yield strength. This is expect to need more detail design and verification for stem and seat structure.

Keywords

References

  1. Kim, Y. C., 2004, "Analysis and development of the upper ball valve inserted," A Thesis for a Doctorate, Chungang University, Republic of Korea.
  2. Kim, S. H., 2004, "Tolerance, structural strength and fatigue resistance tenfold bolbaelbeuui Computations," A Thesis for a Master, Gangwon University, Republic of Korea.
  3. Kim, D. G. and Kim, J. H., 2007, "LNG Analysis of Marine Globe Valve," Journal of the Korean Society of Marine Engineers, Vol. 52, pp. 129-136.
  4. Jung, H. S. and Kim, Y. H., 2007, "Miniature Cryogenic Globe Valve Using Finite Element Study on the design of the structure," Journal of the Korean Society of Marine Engineers, Vol. 52, pp. 145-152.
  5. Emerson, G., 2005, Control Valve Handbook, 4th edition, Emerson Co., USA.
  6. Zappe. R., 2004, Valve Selection Handbook, 5th edition, Trans. of the ASME, USA.