A numerical study of turbulent flow through a variable area orifice meter

被引:0
|
作者
Mokhtarzadeh-Dehghan, MR [1 ]
Yu, L [1 ]
Stephens, DJ [1 ]
机构
[1] Brunel Univ, Dept Mech Engn, Uxbridge UB8 3PH, Middx, England
关键词
flow; numerical modelling; orifice; turbulent;
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The paper describes a numerical study of turbulent flow through an orifice plate restricted by an obstruction of conical shape at its centre. Such a situation occurs in flow metering devices which work an the principle of variable flow area rather than fixed area, as in simple orifice plate meters. The governing differential equations, of continuity and momentum and the equations for the k-epsilon model of turbulence are solved using a finite element method. The velocity and pressure fields and the variation of pressure along the pipe wall are presented. The results show a significant rise in the irrecoverable pressure loss which may reduce the advantage of the meter over simple orifice meters in practice. For comparison, the how field for a simple orifice plate of the same overall geometry has also been presented. The discharge coefficient for this latter case has been predicted with an error of about 1%, compared with published empirical data.
引用
收藏
页码:271 / 280
页数:10
相关论文
共 50 条
  • [41] NUMERICAL INVESTIGATION OF SPINNING MODE TRANSMISSION THROUGH VARIABLE AREA ANNULAR DUCTS WITH FLOW
    Ozyoruk, Yusuf
    Coupland, John
    Tester, Brian J.
    PROCEEDINGS OF THE 22ND INTERNATIONAL CONGRESS ON SOUND AND VIBRATION: MAJOR CHALLENGES IN ACOUSTICS, NOISE AND VIBRATION RESEARCH, 2015, 2015,
  • [42] Numerical study of turbulent air flow and heat transfer in noncircular ducts with variable properties
    Wang, Peng
    Yang, Mo
    Wang, Zhi-Yun
    Xu, Hong-Tao
    Kung Cheng Je Wu Li Hsueh Pao/Journal of Engineering Thermophysics, 2014, 35 (11): : 2269 - 2273
  • [43] Numerical study of turbulent flow and heat transfer characteristics of nanofluids considering variable properties
    Namburu, Praveen K.
    Das, Debendra K.
    Tanguturi, Krishna A.
    Vajjha, Ravikanth S.
    INTERNATIONAL JOURNAL OF THERMAL SCIENCES, 2009, 48 (02) : 290 - 302
  • [44] Analysis of the effect of flow rate on the Doppler continuity equation for stenotic orifice area calculations - A numerical study
    DeGroff, CG
    Shandas, R
    Valdes-Cruz, L
    CIRCULATION, 1998, 97 (16) : 1597 - 1605
  • [45] Analysis of the effect of flow rate on the Doppler continuity equation for stenotic orifice area calculations: A numerical study
    DeGroff, C
    Shandas, R
    ValdesCruz, L
    CIRCULATION, 1996, 94 (08) : 2932 - 2932
  • [46] Experimental and Numerical Investigation on a Fully Developed Turbulent Pipe Flow over a Semicircle Orifice
    Okuda, S.
    Lepeut, C. -H.
    Rasti, M.
    Kawata, T.
    Obi, S.
    THMT-12. PROCEEDINGS OF THE SEVENTH INTERNATIONAL SYMPOSIUM ON TURBULENCE, HEAT AND MASS TRANSFER, 2012, : 2504 - 2512
  • [47] Numerical study of steady turbulent flow through bifurcated nozzles in continuous casting
    Najjar, Fady M.
    Thomas, Brian G.
    Hershey, Donald E.
    Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science, 1995, 26 (04): : 749 - 765
  • [48] Numerical Study on the Effect of Bend Angle on Turbulent Flow through Oscillating Bend
    Ameri, Elham
    Esfahany, M. Nasr
    CHEMICAL PRODUCT AND PROCESS MODELING, 2009, 4 (01):
  • [49] Experimental and numerical investigation of geometric effect on cavitation flow through orifice
    Davoudi, Mohammad Reza
    Mahdi, Miralam
    MECHANICS & INDUSTRY, 2021, 22
  • [50] FLOW - PRESSURE DROP LINEAR RELATION WITH ORIFICE METER
    KUMAR, R
    CHEMICAL ENGINEERING, 1969, 76 (15) : 134 - &