页岩气钻探冲洗液体系的研究与应用
投稿时间:2016-06-27  修订日期:2016-06-27  点此下载全文
引用本文:单文军,蒋睿,陶士先,等.页岩气钻探冲洗液体系的研究与应用[J].钻探工程,2016,43(10):176-181.
SHAN Wen-jun,JIANG Rui,TAO Shi-xian,et al. Research and Application of the Flushing Fluid System for Shale Gas Drilling[J]. Drilling Engineering, 2016,43(10):176-181.
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作者单位E-mail
单文军* 北京探矿工程研究所 82675667@qq.com 
蒋睿 北京探矿工程研究所  
陶士先 北京探矿工程研究所  
岳伟民 北京探矿工程研究所  
李艳宁 北京探矿工程研究所  
基金项目:中国地质调查局地质矿产调查评价项目“重点成矿带钻探冲洗液关键技术研究与示范”(编号:12120113097400)
中文摘要:中国页岩气资源开发潜力巨大,近年来页岩气勘探开发力度不断加大,对钻探工艺和技术的要求不断提高。页岩气地层岩性主要为泥岩、砂岩、页岩、碳质板岩、灰岩,该类地层胶结性差、破碎、井壁强度低,钻进中易出现孔壁失稳,发生坍塌、卡钻、埋钻等孔内事故,需要研制具有强抑制性、低成本、绿色环保的冲洗液体系来保证施工安全。本文通过对页岩气井壁稳定机理的探究,优选出一种适用于页岩地层双聚防塌和成膜防塌低固相冲洗液体系,该体系由抑制剂、防塌剂、降失水剂、润滑剂、封堵剂、流型调节剂等处理剂组成,具有良好的抑制性和胶结性。现场应用取得了良好的效果,保证了项目的顺利施工。
中文关键词:页岩气  钻探  双聚  成膜  抑制性  井壁稳定
 
Research and Application of the Flushing Fluid System for Shale Gas Drilling
Abstract:Shale gas resource potential is tremendous huge in China. In recent years, the requirements of the drilling process and technology are continue to increase along with the efforts of exploration and development of shale gas and unconventional energy sources. Shale gas formation lithology is mainly mudstone, sandstone, shale, carbonaceous slate and limestone. Because of poor formation cementation, broken and low wall strength, hole wall instability, collapse and sticking or burying accidents were liable to happen in drilling process, the flushing fluid system with strong inhibitory, good compatibility, low cost, green environmental protection drilling fluids is needed in the drilling engineering construction. Based on the research on the mechanism of shale borehole wall stability, a low solid phase flushing fluid system with double polyethylene anti-sloughing and film forming anti-sloughing is optimized, which is suitable for shale formation. The system is consisted of inhibitors, anti-sloughing agent, agents, fluid loss additives, lubricants, blocking agents and flow pattern regulators with good inhibition and cementation. Good construction effects have been achieved in a number of field applications.
keywords:shale gas  double polyethylene  film formation  inhibition  borehole wall stability
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