[1]马英文,付团辉,吴泽林,等.渤中34-2/4油田外置式复合射孔技术[J].油气井测试,2018,27(01):31-36.[doi:10.19680/j.cnki.1004-4388.2018.01.005]
 MA Yingwen,FU Tuanhui,WU Zelin,et al. External composite perforation technology in the Bozhong oilfield[J].Well Testing,2018,27(01):31-36.[doi:10.19680/j.cnki.1004-4388.2018.01.005]
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渤中34-2/4油田外置式复合射孔技术()
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《油气井测试》[ISSN:1006-6977/CN:61-1281/TN]

卷:
27
期数:
2018年01期
页码:
31-36
栏目:
出版日期:
2018-02-25

文章信息/Info

Title:
 

External composite perforation technology in the Bozhong oilfield

文章编号:
1004-4388(2018)01-0031-06
作者:
马英文1 付团辉2 吴泽林2 龙海峰3
1. 中海石油(中国)有限公司天津分公司工程技术中心  天津  300459
2. 川南航天能源科技有限公司  四川泸州  646000
3. 中海油田服务股份有限公司天津分公司  天津  300459    
Author(s):
 

MA Yingwen1 FU Tuanhui2 WU Zelin2 LONG Haifeng3

 

1. Engineering and Technology Operation Center, CNOOC Tianjin Branch, Tianjin 300459, China

2. Chuannan Astronautics Energy Technology Co., Ltd., Luzhou, Sichuan 646000, China

3. COSL Tianjin Branch, Tianjin 300459, China

关键词:
渤中油田低孔低渗储层储层改造外置式复合射孔超正压破缝实时监测
Keywords:
 

Bozhong oilfield low-porosity and low-permeability formation reservoir stimulation external composite perforation overpressure fracturing real-time monitoring

分类号:
TE353
DOI:
10.19680/j.cnki.1004-4388.2018.01.005
文献标志码:
A
摘要:
渤中34-2/4油田位于渤海南部海域,属于中低孔-低渗、特低渗储层,采用普通射孔作业时,聚能射孔弹射孔后形成射孔压实带,严重影响油井产能。结合该油田储层特点,采用外置式复合射孔技术对低孔、低渗地层进行补孔增产作业。该技术是一种新型复合火药射孔技术,由起爆、传爆、聚能射孔、气体压裂、井下做功数据实时采集系统,以及地面数据处理系统组成,具有动态超正压破缝的特点,施工作业前采用模拟技术软件优化射孔方案,施工过程中采用井下高速压力计实时监测压力变化,施工后采用三维声波测试仪检测施工效果。在BZ34-2/4-B7井现场应用表明,该技术对低孔、低渗储层改造效果显著,日产液由2~4m3提高到28m3,且作业简单,安全可靠,可为海上同类储层的开采提供借鉴。
Abstract:
 

Bozhong 34-2/4 Oilfield in the southern Bohai Sea is dominated by reservoirs with medium to low porosity, and low to ultra-low permeability. When conventional perforation technology is used, perforation with jet charges generates compacted zones, which may severely impact the productivity of oil producers. In view of the property of this oilfield, the external composite perforation technology was used to conduct perforation adding and stimulation. This technology is an innovative perforation solution involving composite charges, and includes the ignition, transmission, jet charge perforation, gas fracturing, down-hole data real-time acquisition system and surface data processing system. It can achieve dynamic overpressure fracturing, through perforation scheme optimization by simulation assessment before operation, real-time pressure monitoring with downhole high-speed pressure gauge during operation, and performance inspection via 3D sonic detectors after operation. Field application in Well BZ34-2/4-B7 reveals outstanding performance in low-porosity and low-permeability formation, with daily fluid production enhanced from 2-4 m3 to 28 m3. The proposed technology is simple, safe and reliable, and can draw lessons for similar reservoirs.

备注/Memo

备注/Memo:
2017-07-26收稿,2018-01-02修回,2018-01-05接受,2018-03-30网络发表
更新日期/Last Update: 2018-04-26