1 |
Meng W H. Low liquid loading gas-liquid two-phase flow in near horizontal pipes[D]. Tulsa: University of Tulsa, 1999.
|
2 |
Adewumi M A, Mucharam L. Compositional multiphase hydrodynamic modeling of gas/gas-condensate dispersed flow in gas pipelines[J]. SPE Production Engineering, 1990, 5(1): 85-90.
|
3 |
Sun J Y, Jepson W P. Slug flow characteristics and their effect on corrosion rates in horizontal oil and gas pipelines[C]//SPE Annual Technical Conference and Exhibition. Washington, D.
|
|
C.: Society of Petroleum Engineers, 1992: SPE-24787-MS.
|
4 |
刘建武, 何利民. 积液在湿气输送管道中的发展过程分析[J]. 油气田地面工程, 2019, 38(S1): 76-80.
|
|
Liu J W, He L M. Analysis of liquid loading development process in wet gas pipelines[J]. Oil-Gas Field Surface Engineering, 2019, 28(S1): 76-80.
|
5 |
张爱娟, 唱永磊. 湿气管线积液影响因素及其敏感性分析[J]. 石油化工高等学校学报, 2016, 29(5): 94-98.
|
|
Zhang A J, Chang Y L. Analysis of affecting factors and sensitivity on liquid inventory in condensate gas pipeline[J]. Journal of Petrochemical Universities, 2016, 29(5): 94-98.
|
6 |
Belt R J. On the liquid film in inclined annular flow[D]. Delft: Technische Universiteit Delft, 2007.
|
7 |
Yuan G, Pereyra E, Sarica C, et al. An experimental study on liquid loading of vertical and deviated gas wells[C]//SPE Production and Operations Symposium. Oklahoma City, Oklahoma, USA: Society of Petroleum Engineers, 2013: SPE-164516-MS.
|
8 |
Fan Y, Pereyra E, Torres C, et al. Experimental study on the onset of intermittent flow and pseudo-slug characteristics in upward inclined pipes[C]//17th International Conference on Multiphase Production Technology. Cannes, France: BHR Group, 2015: BHR-2015-B1.
|
9 |
Alsaadi Y, Pereyra E, Torres C, et al. Liquid loading of highly deviated gas wells from 60° to 88° [C]//SPE Annual Technical Conference and Exhibition. Houston, Texas, USA: Society of Petroleum Engineers, 2015: SPE-174852-MS.
|
10 |
Wang Z, Guo L, Wu W, et al. Experimental study on the critical gas velocity of liquid-loading onset in an inclined coiled tube[J]. Journal of Natural Gas Science and Engineering, 2016, 34: 22-33.
|
11 |
Skopich A, Pereyra E, Sarica C. Pipe-diameter effect on liquid loading in vertical gas wells[J]. SPE Production & Operations, 2015, 30(2): 164-176.
|
12 |
Landman M J. Non-unique holdup and pressure drop in two-phase stratified inclined pipe flow[J]. International Journal of Multiphase Flow, 1991, 17(3): 377-394.
|
13 |
Barnea D, Taitel Y. Structural and interfacial stability of multiple solutions for stratified flow[J]. International Journal of Multiphase Flow, 1992, 18(6): 821-830.
|
14 |
Espedal M. An experimental investigation of stratified two-phase pipe flow at small inclinations[D]. Norway: Norwegian University of Science and Technology, 1998.
|
15 |
Langsholt M, Holm H. Liquid accumulation in gas-condensate pipelines-an experimental study[C]//13th International Conference on Multiphase Production Technology. Edinburgh, UK: BHR Group, 2007: 33-46.
|
16 |
Kjolaas J, Unander T E, Wolden M, et al. Experiments for low liquid loading with liquid holdup discontinuities in two- and three-phase flows[C]//17th International Conference on Multiphase Production Technology. Cannes, France, 2015.
|
17 |
Fan Y. A study of the onset of liquid accumulation and pseudo-slug flow characterization[D]. Tulsa: University of Tulsa, 2017.
|
18 |
Biberg D, Staff G, Hoyer N, et al. Accounting for flow model uncertainties in gas-condensate field design using the OLGA high definition stratified flow model[C]//17th International Conference on Multiphase Production Technology. Cannes, France, 2015: BHR-2015-G5.
|
19 |
沈伟伟. 管道积液预测研究[D]. 北京: 中国石油大学(北京), 2019.
|
|
Shen W W. Prediction of liquid accumulation in gas pipeline[D]. Beijing: China University of Petroleum, 2019.
|
20 |
Turner R, Hubbard M, Dukler A. Analysis and prediction of minimum flow rate for the continuous removal of liquids from gas wells[J]. Journal of Petroleum Technology, 1969, 21(11): 1475-1482.
|
21 |
Alsaadi Y. Low liquid loading two-phase and three-phase flows in slightly upward inclined pipes[D]. Tulsa: University of Tulsa, 2019.
|
22 |
Barnea D. Transition from annular flow and from dispersed bubble flow—unified models for the whole range of pipe inclinations[J]. International Journal of Multiphase Flow, 1986, 12(5): 733-744.
|
23 |
Luo S, Kelkar M, Pereyra E, et al. A new comprehensive model for predicting liquid loading in gas wells[J]. SPE Production & Operations, 2014, 29(4): 337-349.
|
24 |
Shekhar S, Kelkar M, Hearn W J, et al. Improved prediction of liquid loading in gas wells[J]. SPE Production & Operations, 2017, 32(4): 539-550.
|
25 |
Paz R J, Shoham O. Film-thickness distribution for annular flow in directional wells: horizontal to vertical[J]. SPE Production & Operations, 1999, 4(2): 83-91.
|
26 |
沈伟伟, 邓道明, 刘乔平, 等. 基于环雾流理论的气井临界流速预测模型[J]. 化工学报, 2019, 70(4): 1318-1330.
|
|
Shen W W, Deng D M, Liu Q P, et al. Prediction model of critical gas velocities in gas wells based on annular mist flow theory[J]. CIESC Journal, 2019, 70(4): 1318-1330.
|
27 |
Brito R. Effect of horizontal well trajectory on two-phase gas-liquid flow behavior[D]. Tulsa: University of Tulsa, 2015.
|
28 |
Kowalski. Wall and interfacial shear stress in stratified flow in a horizontal pipe[J]. AIChE J., 1987, 33(2): 274-281.
|
29 |
Fan Y. Analysis of flow pattern transition from segregated to slug flow in upward inclined pipes[J]. International Journal of Multiphase Flow, 2019, 115: 19-39.
|
30 |
邓道明, 董勇, 涂多运, 等. 高压大直径天然气-凝析液管流计算模型[J]. 化工学报, 2013, 64(9): 3096-3101.
|
|
Deng D M, Dong Y, Tu D Y, et al. Modeling of gas-condensate flow in high pressure and large diameter pipelines[J]. CIESC Journal, 2013, 64(9): 3096-3101.
|
31 |
Biberg D. An explicit approximation for the wetted angle in two-phase stratified pipe flow[J]. The Canadian Journal of Chemical Engineering, 1999, 77(6):1221-1224.
|
32 |
Taitel Y, Dukler A E. A model for predicting flow regime transitions in horizontal and near horizontal gas-liquid flow[J]. AIChE J., 1976, 22: 47-55.
|
33 |
Rodrigues H. Pressure effects on low-liquid loading two-phase flow in near-horizontal upward inclined pipes[D]. Tulsa: University of Tulsa, 2018.
|
34 |
Nair J. Gas lift application and severe slugging in toe down horizontal wells[D]. Tulsa: University of Tulsa, 2017.
|