Lithologic Reservoirs

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Study on a single point deliverability formula of horizontal wells in Sulige Gas Field

ZHONG Jiajun1, TANG Hai1, LU Dongliang1, ZHANG Zongda2, LI Donglin2   

  1. 1. Southwest Petroleum University, Chengdu 610500, China; 2. Oil/gas Cooperative Development Branch, Bohai Sea Exploratory Drilling Engineering Corporation, PetroChina, Dagang 300280, China
  • Online:2013-04-20 Published:2013-04-20

Abstract:

The horizontal well deliverability is one of the important parameters of the oil (gas) field and the theoretical basis for oil (gas) wells production proration. For low (special low) permeability oil (gas) field, the single point deliverability testing is a fast and effective way to determine the capacity of the oil (gas) wells. It only needs a stable point of the test data to determine the oil (gas) well capacity and it is simpler, less time-consuming and more economical compared with the back pressure well testing and the modified isochronal test. It is significant to develop the single point deliverability formula for Sulige Gas Field with low (special low) permeability of the gas reservoir capacity analysis. This paper applied gas reservoir numerical simulation method and selected the typical wells in Sulige Gas Field to establish the gas reservoir single well model, achieved single point method productivity formula with binomial deliverability equation, and verified the results of the formula. As a result, the formula has the high precision in the Sulige Gas Field of the capacity analysis of horizontal wells.

Key words: tight sandstone, micro-pore structure, constant rate mercury penetration, Ordos Basin

[1] 董桂玉.苏里格气田上古生界气藏主力含气层段有效储集砂体 展布规律研究[D].成都:成都理工大学,2009. 
[2] 徐勇,侯亚龙,高志华.苏里格气田东区简化试气求产方法研究 [J].石油化工应用,2009,28(8):36-40. 
[3] 赵继承,苟宏刚,周立辉,等.“单点法”产能试井在苏里格气田 的应用[J].特种油气藏,2006,13(3):63-69. 
[4] 王大为,李晓平.水平井产能分析理论研究进展[J].岩性油气 藏,2011,23(2):118-123. 
[5] 王道富,付金华,雷启鸿,等.鄂尔多斯盆地低渗透油气田勘探 开发技术与展望[J].岩性油气藏,2007,19(3):126-130.
[6] Joshi S D. Horizontal well technology[M]. Tulsa:PennWell Books,1991:90-93. 
[7] 范子菲.裂缝性气藏水平井稳态解公式研究[J].石油勘探与开 发,1997,24(5):67-71. 
[8] 刘想平.气藏水平井稳态产能计算新模型[J].天然气工业,1998,18(1):37-40.
[9] 宁正福,韩树刚,程林松,等.低渗透油气藏压裂水平井产能计 算方法[J].石油学报,2002,23(2):68-71. 
[10] 陈志海,马新仿,郎兆新.气藏水平井产能预测方法[J].天然气 工业,2006,26(2):98-99. 
[11] 陈元千.油气藏工程计算方法[M].北京:石油工业出版社,1992:21-27. 
[12] 陈元千.确定气井绝对无阻流量的简单方法[J].天然气工业,1987,7(1):59-63. 
[13] 李进,马旸,杨志华.一种基于“一点法”的气井产能试井资料 处理方法[J].新疆石油地质,2006,31(3):330-331. 
[14] 何光怀,许进进,赖枫鹏,等.一点法产能评价的改进方法[J]. 油气井测试,2005,14(5):1-4. 
[15] 阿曼纳特 U.乔德瑞.气井试井手册[M].冉新权,刘海浪,译.北 京:石油工业出版社,2008:386-393. 
[16] 曹继华,刘俊丰,李伟.一点法试井在台南气田的应用及校正 [J].岩性油气藏,2010,22(3):104-106. 
[17] 胥洪成,陈建军,万玉金,等.一点法产能方程在气藏开发中的 应用[J].石油天然气学报,2007,29(3):454-456. 
[18] 秦通社.气井“一点法”试气技术[J].西部探矿工程,2009,(10):51-53. 
[19] 蔡磊,贾爱林,唐俊伟,等.苏里格气田气井合理配产方法研究 [J].油气井测试,2007,16(4):25-28.
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