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硅酸盐/聚乙烯醇抑制性能研究
引用本文:张宇睿,万里平,马晨洮,舒小波,李皋,朱利.硅酸盐/聚乙烯醇抑制性能研究[J].石油与天然气化工,2013,42(5):506-509.
作者姓名:张宇睿  万里平  马晨洮  舒小波  李皋  朱利
作者单位:[1]中国石油西南油气面公司天然气研究院 [2]中国石油西南油气田公司蜀南气矿
基金项目:中国石油天然气股份有限公司重大科技项目“非常规油气资源勘探开发技术研究”(2011A-4803).
摘    要:非常规储层体积压裂施工液体用量大,返排液多,返排液中含有各种地层离子、残余添加剂、悬浮物等,无害化处理难度较大。介绍了国外体积压裂返排液的处理方式,并结合四川盆地的特点,形成了适合于四川盆地非常规储层体积压裂返排液回收利用处理流程。室内研究表明,体积压裂返排液中的残余添加剂浓度较低,具有一定的矿化度,采用回收利用处理流程进行处理后,其摩阻与清水配制的体积压裂液相当。现场应用也进一步表明,体积压裂返排液处理后配制的液体摩阻性能与清水配制的相当。现场获得了良好的储层改造效果,节约了配液用水,减少了废弃物排放,实现了节能减排。

关 键 词:体积压裂  返排液  重复利用  非常规储层
收稿时间:6/4/2013 12:00:00 AM

Properties research of potassium silicate/polyvinyl alcohol inhibitor
Zhang Yurui,Wan Liping,Ma Chentao,Shu Xiaobo,Li Gao and Zhu Li.Properties research of potassium silicate/polyvinyl alcohol inhibitor[J].Chemical Engineering of Oil and Gas,2013,42(5):506-509.
Authors:Zhang Yurui  Wan Liping  Ma Chentao  Shu Xiaobo  Li Gao and Zhu Li
Affiliation:1 Research Institute of Natural Gas Technology, PetroChina Southwest Oil and Oasfield Company ,Chengdu 610213, Sichuan, China; 2. Southern Sichuan Gas District, PetroChina Southwest Oil and Gasfield Company, Luzhou 646001, Sichuan, China)
Abstract:Volume-fracturing in unconventional reservoirs needs massive fluid and brings plen- ty of flow-back fluid which contains varied ions, residual additives, suspending matters and so on,so harmless disposal has great difficulties. This paper introduced the ways of disposal flow back fluid from volume-fracturing, and combined the actual circumstance of unconventional gas well in Sichuan. We formed the disposal flow-back fluid process. Laboratory study showed that concentration of residual additives were low in flow-back fluid, but had a certain amount of total dissolved salts, the drag friction of the treated flow-back fluid was the same as the fracturing flu- id produced by the freshwater. It also came to the same conclusion in field trial, which gained ef ficient reservoir reformation, saved freshwater, reduced drainage of waste water, and achieved energy conservation and emission reduction.
Keywords:volume-fracturing  flow back fluid  reuse  unconventional reservoirs
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