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水动力压裂技术在海上油田应用的可行性分析 被引量:5
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作者 邹信波 刘帅 +5 位作者 江任开 杨光 段铮 匡腊梅 孙林 李旭光 《钻采工艺》 CAS 北大核心 2021年第3期60-63,共4页
中国海上油田低渗储层储量大,但受储层多近水、平台空间受限、作业成本高等因素限制,现有储层改造技术难以实现经济开发或难以规模化实施。为解决这一问题,论证一种不受因素限制的水动力压裂技术在海上油田应用的可行性,对其技术原理、... 中国海上油田低渗储层储量大,但受储层多近水、平台空间受限、作业成本高等因素限制,现有储层改造技术难以实现经济开发或难以规模化实施。为解决这一问题,论证一种不受因素限制的水动力压裂技术在海上油田应用的可行性,对其技术原理、技术应用、作用机理和技术现状方面进行阐述,再从储层、工艺、经济三个方面进行技术可行性分析。分析认为,水动力压裂技术在海上油田具有较大的应用前景,提出了未来海上油田技术攻关的四个方向,即:一趟管柱多级水动力压裂技术、研发适合φ244.48mm或φ177.8mm套管尺寸水力冲击器、海上油田工艺安全性研究和水动力压力及裂缝模拟与检测。该分析结果对中国海上低渗油田以及类似油田的开发具有借鉴指导意义。 展开更多
关键词 水动力压裂 低渗 海上油田 可行性
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Pulsating hydraulic fracturing technology in low permeability coal seams 被引量:12
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作者 Wang Wenchao Li Xianzhong +1 位作者 Lin Baiquan Zhai Cheng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第4期681-685,共5页
Based on the difficult situation of gas drainage in a single coal bed of high gas content and low perme- ability, we investigate the technology of pulsating hydraulic pressure relief, the process of crank plunger move... Based on the difficult situation of gas drainage in a single coal bed of high gas content and low perme- ability, we investigate the technology of pulsating hydraulic pressure relief, the process of crank plunger movement and the mechanism of pulsating pressure formation using theoretical research, mathematical modeling and field testing. We analyze the effect of pulsating pressure on the formation and growth of fractures in coal by using the pulsating hydraulic theory in hydraulics. The research results show that the amplitude of fluctuating pressure tends to increase in the case where the exit is blocked, caused by pulsating pressure reflection and frictional resistance superposition, and it contributes to the growth of fractures in coal. The crack initiation pressure of pulsating hydraulic fracturing is 8 MPa, which is half than that of normal hydraulic fracturing; the pulsating hydraulic fracturing influence radius reaches 8 m. The total amount of gas extraction is increased by 3.6 times, and reaches 50 LJmin at the highest point. The extraction flow increases greatly, and is 4 times larger than that of drilling without fracturing and 1.2 times larger than that of normal hydraulic fracturing. The technology provides a technical measure for gas drainage of high gas content and low permeability in the single coal bed. 展开更多
关键词 Gas drainage Pulsating hydraulic fracturing Fatigue damage Permeability improvement
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