Numerical investigation of gas-liquid hydrodynamics during trapped-liquid displacement from low sections of high-pressure gas pipelines

被引:6
|
作者
, E. Hamami Bissor [1 ]
Magnini, M. [2 ]
Ullmann, A. [1 ]
Brauner, N. [1 ]
机构
[1] Tel Aviv Univ, Sch Mech Engn, IL-69978 Tel Aviv, Israel
[2] Univ Nottingham, Dept Mech Mat & Mfg Engn, Nottingham NG7 2RD, England
基金
英国工程与自然科学研究理事会;
关键词
Liquid displacement; Critical gas flow rate; High pressure; Elbows; Bends; 3D numerical simulations; 2-PHASE FLOW-THROUGH; ELBOW; DROP; PREDICTION; VELOCITY; ONSET; BEND;
D O I
10.1016/j.jngse.2021.104185
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Assuring the displacement of trapped liquids from low sections by gas flow is essential for a proper operation of high-pressure natural gas pipelines. Numerical investigation of the associated transient turbulent high-pressure gas-liquid flow can provide understanding of the involved two-phase flow phenomena. To this aim, the numerical tool OpenFOAM has been used for simulating the gas-liquid flow encountered in a pipeline of a long shallow upward inclined section connected to a horizontal section by an elbow. Effects of various system parameters (e.g., gas pressure, liquid properties, up-comer inclination, elbow radius of curvature) on the gas-liquid flow dynamics are studied. Since 3D transient numerical simulations are more challenging, results obtained by 2D and 3D numerical simulations are compared to identify the similarities, sources of discrepancies, and their significance. Quantitative integral flow characteristics and the associated local flow phenomena are examined. 3D simulations verify the main findings of 2D simulations concerning the flow pattern, the associated critical gas velocity for purging the liquid and liquid propagation rate at supercritical gas velocities. The critical gas flow rate required to purge out the accumulated liquid is associated with that required to mobilize the liquid film tail along the up-comer. The main differences between 3D and 2D simulation results were captured near the elbows. The 3D effects, which result from the centrifugal force acting on the gas during its flow through the elbow, affect the downstream axial gas velocity profile and the secondary flow pattern (i.e., Dean vortices). The resulting higher interfacial shear exerted by the gas on the liquid film tail is the source of the deviations between the 3D and 2D simulation results. However, 2D simulations are sufficient for representing the gas-liquid dynamics out of the elbows' influence region, where their effects on the flow fade out.
引用
收藏
页数:19
相关论文
共 50 条
  • [21] Hydrodynamics investigation of gas-liquid system in the columnar absorber with grid plates
    Khimicheskoe I Neftegazovoe Mashinostroenie, 1997, (04): : 21 - 22
  • [22] HIGH-PRESSURE GAS-TO-LIQUID TRANSDUCER
    COFFIN, DO
    REVIEW OF SCIENTIFIC INSTRUMENTS, 1958, 29 (10): : 896 - 896
  • [23] Experimental and numerical investigation of Gas-Liquid gravity displacement in a horizontal well intersecting a vertical fracture
    Li, Hongtao
    Liang, Jie
    Jia, Hongjun
    Dong, Mingzhe
    Li, Gao
    Wu, Pengcheng
    Wang, Yanmin
    JOURNAL OF NATURAL GAS SCIENCE AND ENGINEERING, 2020, 84
  • [24] Hydrodynamics and Heat Transfer during Boiling in a Rotating Gas-Liquid Layer
    Voinov, N. A.
    Zhukova, O. P.
    Konovalov, N. M.
    THEORETICAL FOUNDATIONS OF CHEMICAL ENGINEERING, 2018, 52 (06) : 987 - 995
  • [25] Modelling of release of gas from high-pressure pipelines
    Sand, IO
    Sjoen, K
    Bakke, JR
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 1996, 23 (09) : 953 - 983
  • [26] Numerical Investigation on Flow Characteristics of Gas-Liquid Reactive Jet
    Zong X.
    Li H.
    Han X.
    Peng B.
    Yang C.
    Hsi-An Chiao Tung Ta Hsueh/Journal of Xi'an Jiaotong University, 2020, 54 (03): : 35 - 40and196
  • [27] EQUATIONS OF STATE AT HIGH PRESSURE FROM STANDPOINT OF GAS-LIQUID EQUILIBRIA
    YORIZANE, M
    MASUOKA, H
    INTERNATIONAL CHEMICAL ENGINEERING, 1969, 9 (03): : 532 - &
  • [28] Numerical Simulation of Gas-Liquid Gravity Displacement in Vertical Fractures during Drilling of Carbonate Formations
    Peng, Chi
    Deng, Zhaoyong
    Fu, Jianhong
    Cao, Quan
    Zhang, Jinhong
    Li, Qingfeng
    Pang, Jianyun
    Yang, Yun
    Yu, Ziqiang
    ACS OMEGA, 2023, : 8846 - 8864
  • [29] Fracture extension and coal breaking performance by high-pressure gas-liquid jet flow
    高压气液两相射流裂纹扩展及致裂机理
    Lin, Baiquan (lbq21405@126.com), 1600, China University of Mining and Technology (49):
  • [30] Comparison of various droplet breakup models in gas-liquid flows in high-pressure environments
    Khaleghi, H.
    Ganji, D. D.
    Omidvar, A.
    IRANIAN JOURNAL OF SCIENCE AND TECHNOLOGY TRANSACTION B-ENGINEERING, 2008, 32 (B4): : 385 - 400