Lithologic Reservoirs ›› 2011, Vol. 23 ›› Issue (2): 118-123.doi: 10.3969/j.issn.1673-8926.2011.02.023

Previous Articles     Next Articles

Advances in deliverability analysis of horizontal well

WANG Dawei, LI Xiaoping   

  1. State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China
  • Online:2011-04-20 Published:2011-04-20

Abstract:

Deliverability analysis of horizontal well is the basic work of getting economic benefits, and it provides basis for horizontal well optimization, perfecting work system, production dynamic analysis and adjustment. At present, there are twomethods of deliverability calculation for horizontal well, namely analytical method and simulation method. The deliverability prediction methods for conventional horizontal well, multilateral well, fractured horizontal well and horizontal well pattern are summarized. The birth and development of deliverability analysis theory are reviewed, the new advances at home and abroad in the deliverability analysis theory and methods are introduced, the problems exists are expounded, and the development direction is pointed out, which will be helpful for improving the application of horizontal well in oilfield development.

Key words: pore network model, relative permeability, Carreau model, viscoelastic, microscopic simulation

[1] Merkulov V P. Le debit des puits devies et horizontaux [J]. Neft.Khoz.,1958,(6):51-56.
[2] Borisov J P. Oil production using horizontal and multiple deviation wells[M]. Oklahoma:The R & D Library Translation,1984.
[3] Giger F M. Horizontal wells production techniques in heterogenous reservior[R]. SPE 13710,1985.
[4] Joshi S D. Augmentation of well production using slant and horizontal wells[R]. SPE 15375,1986.
[5] 郭康良,郭旗,程时清.凝析气藏水平井产能计算模型及方法研究[J].岩性油气藏,2007,19(1):120-123.
[6] Renard G,Dupuy J M. Formation damage effects on horizontal-well flow efficiency[R]. SPE 19414,1991.
[7] Elgaghad S A,Osisanya S O,Tiab D. A simple productivity equation for horizontal wells based on drainage area concept[R]. SPE 35713,1996.
[8] Mutalik P N,Godbole S P,Joshi S D. Effect of drainage area shapes on the the productivity of horizontal wells[R]. SPE 18301,1988.
[9] Babu D K,Odeh Aziz S. Productivity of a horizontal well[R]. SPE 18298,1989.
[10] Kuchuk F J,Goode P A,Wilkson D J,et al. Pressure-transient behavior of horizontal wells with and without gas cap or aquifer [R].SPE 17413,1991.
[11] Frick T P,Economides M J. Horizontal well damages characterization and removal[R]. SPE 21795,1991.
[12] 徐景达.关于水平井的产能计算———论乔希公式的应用[J].石油钻采工艺,1991,13(6):67-74.
[13] 窦宏恩.预测水平井产能的一种新方法[J].石油钻采工艺,1996,18(1):76-81.
[14] 张望明,韩大匡,闫存章.水平井油藏内三维势分布精确产能公式[J].石油勘探与开发,1999,26(3):49-52.
[1] Lü Dongliang, YANG Jian, LIN Liming, ZHANG Kaili, CHEN Yanhu. Characterization model of oil-water relative permeability curves of sandstone reservoir and its application in numerical simulation [J]. Lithologic Reservoirs, 2023, 35(1): 145-159.
[2] WANG Jingyi, ZHOU Zhijun, WEI Huabin, CUI Chunxue. Simulation of oil-water two-phase flow based on shale pore network model [J]. Lithologic Reservoirs, 2021, 33(5): 148-154.
[3] WANG Dongqi, YIN Daiyin. Empirical formulas of relative permeability curve of water drive reservoirs [J]. Lithologic Reservoirs, 2017, 29(3): 159-164.
[4] ZHOU Congcong. Microscopic simulation of relative permeability curves in polymer flooding [J]. Lithologic Reservoirs, 2011, 23(3): 119-123.
[5] LV Dongliang,TANG Hai,LV Jianjiang,MA Xiaoming,YU Beibei,WANG Quanlin. Deliverability equation for water-production gas well [J]. Lithologic Reservoirs, 2010, 22(4): 112-115.
[6] YANG Wuyang, YANG Wencai, LIU Quanxin, WANG Xiwen. 3D frequency and space domain amplitude-preserved migration with viscoelastic wave equations [J]. Lithologic Reservoirs, 2007, 19(1): 86-91.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] WEI Qinlian, ZHENG Rongcai, XIAO Ling,WANG Chengyu, NIU Xiaobing. Influencing factors and characteristics of Chang 6 reservoir in Wuqi area, Ordos Basin[J]. Lithologic Reservoirs, 2007, 19(4): 45 -50 .
[2] WANG Dongqi, YIN Daiyin. Empirical formulas of relative permeability curve of water drive reservoirs[J]. Lithologic Reservoirs, 2017, 29(3): 159 -164 .
[3] LI Yun, SHI Zhiqiang. Study on fluid inclusion of tight sandstone reservoir of Upper Triassic Xujiahe Formation in central Sichuan Basin[J]. Lithologic Reservoirs, 2008, 20(1): 27 -32 .
[4] JIANG Ren, FAN Tailiang, XU Shouli. Concept and techniques of seismic geomorphology[J]. Lithologic Reservoirs, 2008, 20(1): 33 -38 .
[5] ZOU Mingliang, HUANG Sijing, HU Zuowei, FENG Wenli, LIU Haoniannian. The origin of carbonate cements and the influence on reservoir quality of Pinghu Formation in Xihu Sag, East China Sea[J]. Lithologic Reservoirs, 2008, 20(1): 47 -52 .
[6] WANG Bingjie, HE Sheng, NI June, FANG Du. Activity analysis of main faults in Qianquan area, Banqiao Sag[J]. Lithologic Reservoirs, 2008, 20(1): 75 -82 .
[7] CHEN Zhenbiao, ZHANG Chaomo, ZHANG Zhansong, LING Husong, SUN Baodian. Using NMR T2 spectrum distribution to study fractal nature of pore structure[J]. Lithologic Reservoirs, 2008, 20(1): 105 -110 .
[8] ZHANG Houfu, XU Zhaohui. Discussion on stratigraphic-lithologic reservoirs exploration in the aspect of the research history of reservoirs[J]. Lithologic Reservoirs, 2008, 20(1): 114 -123 .
[9] ZHANG Xia. Cultivation of exploration creativity[J]. Lithologic Reservoirs, 2007, 19(1): 16 -20 .
[10] YANG Wuyang, YANG Wencai, LIU Quanxin, WANG Xiwen. 3D frequency and space domain amplitude-preserved migration with viscoelastic wave equations[J]. Lithologic Reservoirs, 2007, 19(1): 86 -91 .
TRENDMD: