The Types of Reservoirs Encountered by the Wells in the Halahatang Oilfield and Water Flooding Effects
-
摘要: 针对哈拉哈塘油田缝洞型油藏单井注水替油效果差异大的问题,在分析哈拉哈塘油田注水替油井动静态特征的基础上,建立了基于地球物理方法、录井响应特征、动态分析系统判别储集体类型的方法,将哈拉哈塘油田单井钻遇储集体划分为孤立洞穴+弱底水型、孤立洞穴+强底水型、裂缝孔洞型、裂缝孔洞+底部洞穴型等4种类型,并通过注水替油机理研究和矿场试验对不同类型缝洞体的注水替油效果进行了分析。该油田60口井注水替油的矿场实践结果表明,孤立洞穴+弱底水型、裂缝孔洞+底部洞穴型储集体宜采用注水替油方式开采,而裂缝孔洞型、孤立洞穴+强底水型储集体不适宜采用注水替油方式开采。研究结果对哈拉哈塘油田缝洞型油藏开发方式优选及改善单井注水开发效果有重要的指导作用。Abstract: In the fracture-vug reservoirs of Halahatang Oilfield, water flooding effects are quite different in different production wells. In order to solve this problem, a reservoir type discrimination method based on geophysical methods, logging response features, and dynamic analysis systems was established by analyzing dynamic and static characteristics of production wells in the process of water flooding. The reservoirs encountered by the wells in Halahatang Oilfield were divided into four types, i.e., isolated cavern+weak bottom water, isolated cavern+strong bottom water, fracture-vug and fracture-vug+bottom cavern. The water flooding effects in different types of fracture-vug reservoirs were analyzed by means of water flooding mechanism research and field test. This method was applied on site for water flooding operation at 60 wells in Halahatang Oilfield. And it was shown that the waterflooding method was suitable for isolated cavern+weak bottom water type and fracture-vug+bottom cavern type reservoirs instead of fracture-vug type and isolated cavern-strong bottom water type reservoirs. It was an important guidance for optimizing development modes of fracture-vug reservoirs and improving single-well water flooding effects in Halahatang Oilfield.
-
Keywords:
- carbonate reservoir /
- reservoir /
- water flooding /
- fracture /
- vug /
- Halahatang Oilfield
-
-
[1] 陈方方,段新国,袁玉春,等.塔里木油田缝洞型碳酸盐岩油藏开发特征[J].成都理工大学学报(自然科学版),2012,39(6):606-610. CHEN Fangfang,DUAN Xinguo,YUAN Yuchun,et al.Characteristics of exploration and development of fractured-vuggy carbonate rock oil pool in Tarim Oilfield of China[J].Journal of Chengdu University of Technology(Science Technology Edition),2012,39(6):606-610. [2] 李小波,荣元帅,刘学利,等.塔河油田缝洞型油藏注水替油井失效特征及其影响因素[J].油气地质与采收率,2014,21(1):59-62. LI Xiaobo,RONG Yuanshuai,LIU Xueli,et al.Failure characteristics and influencing factors analysis on water injection for oil wells in fractured-vuggy reservoir[J].Petroleum Geology and Recovery Efficiency,2014,21(1):59-62. [3] 张宏方.碳酸盐岩油藏缝洞单元离散数值模拟方法研究[J].石油钻探技术,2015,43(2):71-77. ZHANG Hongfang.Research on discrete numerical simulation of fracture-cave unit in carbonate reservoir[J].Petroleum Drilling Techniques,2015,43(2):71-77. [4] 曹鹏,常少英,戴传瑞,等.缝洞型碳酸盐岩油藏注水替油适应性浅析[J].石油与天然气学报,2014,36(3):121-125. CAO Peng,CHANG Shaoying,DAI Chuanrui,et al.Brief analysis on water-flooding development of fractured-cavity type of carbonate reservoirs[J].Journal of Oil and Gas Technology,2014,36(3):121-125. [5] 李鹴,李允.缝洞型碳酸盐岩孤立溶洞注水替油实验研究[J].西南石油大学学报(自然科学版),2010,32(1):117-120. LI Shuang,LI Yun.An experimental research on water injection to replace the oil in isolated caves in fracture-cavity carbonate rock oilfield[J].Journal of Southwest Petroleum University(Science Technology Edition),2010,32(1):117-120. [6] 杨坚,吴涛.塔河油田碳酸盐岩缝洞型油气藏开发技术研究[J].石油天然气学报,2008,30(3):326-328. YANG Jian,WU Tao.Technique of reservoir development in carbonate fracture-vug reservoirs in Tahe Oilfield[J].Journal of Oil and Gas Technology,2008,30(3):326-328. [7] 杨旭,杨迎春,廖志勇.塔河缝洞型油藏注水替油开发效果评价[J].新疆石油天然气,2010,6(2):59-64. YANG Xu,YANG Yingchun,LIAO Zhiyong.The assessment of water flooding in paleocave reservoir in the Tahe Oilfield[J].Xinjiang Oil Gas,2010,6(2):59-64. [8] 詹俊阳,马旭杰,何长江.塔河油田缝洞型油藏开发模式及提高采收率[J].石油与天然气地质,2012,33(4):655-660. ZHAN Junyang,MA Xujie,HE Changjiang.Development scheme and EOR technique of fracture-vug reservoirs in Tahe Oilfield[J].Oil Gas Geology,2012,33(4):655-660. [9] 李爱芬,张东,高成海.封闭定容型缝洞单元注水替油开采规律[J].油气地质与采收率,2012,19(3):94-97. LI Aifen,ZHANG Dong,GAO Chenghai.Law of water injector production in fractured-vuggy unit with enclosed boundary and constant volume[J].Petroleum Geology and Recovery Efficiency,2012,19(3):94-97. [10] 荣元帅,黄咏梅,刘学利,等.塔河油田缝洞型油藏单井注水替油技术研究[J].石油钻探技术,2008,36(4):57-60. RONG Yuanshuai,HUANG Yongmei,LIU Xueli,et al.Single well water injection production in Tahe fracture-vuggy reservoir[J].Petroleum Drilling Techniques,2008,36(4):57-60. [11] 赵宽志,张丽娟,郑多明,等.塔里木盆地缝洞型碳酸盐岩油气藏储量计算方法[J].石油勘探与开发,2015,42(2):251-256. ZHAO Kuanzhi,ZHANG Lijuan,ZHENG Duoming,et al.A reserve calculation method for fracture-cavity carbonate reservoirs in Tarim Basin[J].Petroleum Exploration and Development,2015,42(2):251-256. -
期刊类型引用(11)
1. 赵小光,胡东伟,李媛,董春,翁华涛. 超低渗砂岩储层深穿透缓速解堵增注工艺. 化学工程师. 2024(04): 90-94+21 . 百度学术
2. 孙亚东,杨立,李新亮. 高温酸化杂化胶凝剂的研制与性能评价. 油田化学. 2023(02): 223-228 . 百度学术
3. 兰健,戴姗姗,戴元梅,陈楠,鲁红升. 耐高温酸液稠化剂的合成与性能评价. 油田化学. 2023(04): 636-642 . 百度学术
4. 李朋,赖小娟,王磊,李鹏,高进浩,张小鑫,刘贵茹. 一种耐高温酸液稠化剂的制备及性能. 精细化工. 2022(02): 411-416+432 . 百度学术
5. 刘坤,曹杰,焦克波,李永寿. 缓释酸体系的研究进展. 精细石油化工. 2022(01): 68-73 . 百度学术
6. 邢沛东,卓兴家,曹广胜,张宁,赵小萱. 岩石的酸化敏感性微观机理研究. 当代化工. 2022(08): 1803-1806+1870 . 百度学术
7. 魏向阳,王磊,赖小娟,苗林,王婷婷,党志强. 耐高温疏水缔合型酸液稠化剂的合成与性能. 石油化工. 2022(10): 1211-1217 . 百度学术
8. 张伟,任登峰,李富荣,刘爽,王艳,王桥,白文路. 一种耐高温酸液稠化剂的研制. 钻采工艺. 2022(06): 129-133 . 百度学术
9. 曹广胜,李哲,隋雨,白玉杰,王大業. S区碳酸盐岩耐高温酸压酸液体系优选及性能评价. 石油化工高等学校学报. 2020(05): 48-53 . 百度学术
10. 王丽伟,石阳,高莹,韩秀玲,王燕. 我国油气藏增产酸液体系的发展历程及进展. 河南化工. 2019(07): 3-6 . 百度学术
11. 白建文,陶秀娟,韩红旭,朱李安,杨超,翟晓鹏,郭志阳. 苏里格气田东区碳酸盐岩储层酸压用单剂稠化酸. 天然气工业. 2019(12): 88-94 . 百度学术
其他类型引用(3)
计量
- 文章访问数: 2850
- HTML全文浏览量: 83
- PDF下载量: 3060
- 被引次数: 14