Simultaneous Measurement of Volumetric Flowrates of Gas-Liquid Bubbly Flow Using a Turbine Flowmeter

被引:3
|
作者
Uchiyama, Tomomi [1 ]
Miyamoto, Shogo [2 ]
Horie, Kosuke [2 ]
Takamure, Kotaro [1 ]
机构
[1] Nagoya Univ, Inst Mat & Syst Sustainabil, Furo Cho, Chikusa Ku, Nagoya 4648601, Japan
[2] Nagoya Univ, Grad Sch Informat, Furo Cho, Chikusa Ku, Nagoya 4648601, Japan
关键词
gas-liquid two-phase flow; flowrate measurement; turbine flowmeter; rotor rotational speed; pressure loss; 2-PHASE FLOW; CORIOLIS FLOWMETERS; VENTURI;
D O I
10.3390/s23094270
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The flowrate measurement of the gas-liquid two-phase flow frequently observed in industrial equipment, such as in heat exchangers and reactors, is critical to enable the precise monitoring and operation of the equipment. Furthermore, certain applications, such as oil and natural gas processing plants, require the accurate measurements of the flowrates of each phase simultaneously. This study presents a method that can simultaneously measure the volumetric flowrates of each phase of gas and liquid two-phase mixtures, Q(g) and Q(l), respectively, without separating the phases. The method employs a turbine flowmeter and two pressure sensors connected to the pipes upstream and downstream of the turbine flowmeter. By measuring the rotational speed of the rotor and the pressure loss across the flowmeter, the flowrate of the two-phase mixtures Q(tp) = (Q(g) + Q(l)) and the gas volumetric flowrate ratio beta = (Q(g)/Q(tp)) are determined. The values of Q(g) and Q(l) are calculated as beta Q(tp) and (1 - beta)Q(tp). This study also investigates the measurement accuracies for air-water two-phase flows at 0.67 x 10(-3) <= Q(tp) <= 1.67 x 10(-3) m(3)/s and beta <= 0.1, concluding that the full-scale accuracies of Q(tp), beta, Q(g), and Q(l) are 3.1%, 4.8%, 3.9%, and 3%, respectively. These accuracies either match or improve the accuracies of similar methods reported in the literature, indicating that the proposed method is a viable solution for the determination of phase-specific flowrates in gas-liquid two-phase mixtures.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] Gas-liquid two-phase flow measurement using differential pressure signals from a dual-cone flowmeter
    College of Metrological Technology & Engineering, China Jiliang University, Hangzhou
    310018, China
    Gao Xiao Hua Xue Gong Cheng Xue Bao, 1 (84-89):
  • [22] Buoyancy Driven Flow with Gas-Liquid Coatings of Peristaltic Bubbly Flow in Elastic Walls
    Ijaz, Nouman
    Riaz, Arshad
    Zeeshan, Ahmed
    Ellahi, Rahmat
    Sait, Sadiq M.
    COATINGS, 2020, 10 (02)
  • [23] Simulation of a reacting gas-liquid bubbly flow with CFD and PBM: Validation with experiments
    Buffo, A.
    Vanni, M.
    Marchisio, D. L.
    APPLIED MATHEMATICAL MODELLING, 2017, 44 : 43 - 60
  • [24] Bubble size in two-phase gas-liquid bubbly flow in ducts
    Winterton, RHS
    Munaweera, JS
    CHEMICAL ENGINEERING AND PROCESSING-PROCESS INTENSIFICATION, 2001, 40 (05) : 437 - 447
  • [25] Increase of gas-liquid interfacial area in bubbly flows by pulsating flow conditions
    Evgenidis, Sotiris P.
    Karapantsios, Thodoris D.
    CHEMICAL ENGINEERING JOURNAL, 2024, 486
  • [26] TWO PHASE GAS-LIQUID BUBBLY FLOW MODELING IN VERTICAL MINI PIPE
    Kebriaee, M. H.
    Karabi, H.
    Khorsandi, S.
    Saidi, M. H.
    PROCEEDINGS OF THE ASME INTERNATIONAL HEAT TRANSFER CONFERENCE - 2010 , VOL 3: COMBUSTION, CONDUCTION, ELECTRONIC COOLING, EVAPORATION,TWO-PHASE FLOW, 2010, : 947 - 956
  • [27] EFFECT OF BUBBLE BREAKUP ON THE PARAMETERS OF BUBBLY FLOW OF A GAS-LIQUID MIXTURE.
    Nevinskiy, V.V.
    Rozenblyum, V.I.
    Savel'yev, M.I.
    Fluid mechanics. Soviet research, 1985, 14 (06): : 119 - 123
  • [28] Modelling bubble induced turbulence for gas-liquid bubbly flow in a vertical pipe
    Islam, A. S. M. Atiqul
    Bergstrom, D. J.
    CHEMICAL ENGINEERING SCIENCE, 2019, 197 : 159 - 171
  • [29] A new absolute measurement of the volumetric gas ratio of gas-liquid mixture: The smac
    Porot, P
    REVUE DE L INSTITUT FRANCAIS DU PETROLE, 1995, 50 (06): : 807 - 819
  • [30] Velocity field in isothermal turbulent bubbly gas-liquid flow through a pipe
    Velidandla, V
    Putta, S
    Roy, RP
    EXPERIMENTS IN FLUIDS, 1996, 21 (05) : 347 - 356