Rheological property of low-damage, ideal packing, film-forming amphoteric/sulfonation polymer drilling fluids

被引:0
作者
Hong-xia Zhang
Jie-nian Yan
Yong Shu
Sheng-ying Zhao
机构
[1] China University of Petroleum (Beijing),Ministry of Education Key Laboratory of Petroleum Engineering
来源
Journal of Central South University of Technology | 2008年 / 15卷
关键词
low-permeability dense gas condense reservoir; amphion and sulfonation polymer drilling fluid; damage controlling; water-blocking; ideal packing theory (IPT); film-forming agent; rheological properties;
D O I
暂无
中图分类号
学科分类号
摘要
Low-permeability dense reservoirs, including micro-fractured reservoirs, are commonly characterized by high content of clay substances, high original water saturation, high sensitivity to invasive fluids, high capillary pressure, complicated structure and anisotropic, high flow-resistance and micro pore throats etc,. Generally they also have lots of natural micro fractures, probably leading to stress sensibility. Main damaging factors in such reservoirs are water-sensibility and water-blocking caused by invasive fluids during drilling and production operations. Once damaged, formation permeability can rarely recovered. Numerous studies have shown that damaging extent of water-blocking ranges from 70% to 90%. Main damaging mechanisms and influencing factors of water-blocking were systematically analyzed. Also some feasible precaution or treating approaches of water-blocking were put forward. In a laboratory setting, a new multi-functional drilling fluid composed mainly of amphion polymer, sulfonation polymer, high effectively preventive water-blocking surfactants, ideal packing temporary bridging agents (TBA) and film-forming agents, etc., were developed. New low-damage drilling fluids has many advantages, such as good rheological properties, excellent effectiveness of water-blocking prevention, good temporary plugging effect, low filtration and ultra-low permeability (API filtration⩽5 mL, HTHP filtration⩽10 mL, mud cake frictional coefficient⩽0.14, permeability recovery>81%), can efficiently prevent or minimize damage, preserve natural formation and enhance comprehensive development-investment effect in TUHA Jurassic dense sandstone reservoir formation with low-permeability, the only one developing integrated condense gas field. Some references can be provided to similar reservoir formations.
引用
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页码:429 / 433
页数:4
相关论文
共 19 条
[1]  
Lin G.-r.(2003)Fluid damage and solution method study of low permeability gas reservoir [J] Petroleum Exploration and Development 30 117-118
[2]  
Shao C.-g.(2004)Damage of residual water on permeability of tight gas reservoir [J] Natural Gas Industry 24 106-108
[3]  
Xu Z.-feng.(1999)Remediation of Atr and hydrocarbon phase trapping problems in low permeability gas reservoirs [J] Journal of Canadian Petroleum Technology 38 39-48
[4]  
Ren X.-j.(1998)Characteristic of formation damage in low permeability reservoir [J] Drilling Fluid and Completion Fluid 15 11-13
[5]  
Zhang N.-s.(2006)Study on stress sensibility of the reservoir rock in Sulige gas oilfield [J] Drilling Fluid and Completion Fluid 23 29-30
[6]  
Zhang X.-f.(2004)New theory and method for optimizing the particle size distribution of bridging agents in drilling fluids [J] Acta Petrolei Sinica 25 88-91
[7]  
Bennion D. B.(2005)Study on membrane theory and film-forming drilling fluid [J] Drilling Fluid and Completion Fluid 22 1-4
[8]  
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[9]  
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[10]  
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