研究论文

清洁压裂液对煤岩储层伤害的实验评价

  • 周珺 ,
  • 伊向艺 ,
  • 卢渊 ,
  • 邱小龙 ,
  • 叶金亮
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  • 1. 成都理工大学能源学院, 成都610059;
    2. 成都理工大学油气藏地质与开发工程国家重点实验室, 成都610059;
    3. 贵州省地质矿产勘查开发局113地质大队, 六盘水553001;
    4. 兰州兰石能源装备工程研究院有限公司, 兰州730050
周珺,博士研究生,研究方向为储层增产改造技术和非常规气藏开采,电子信箱:zhoucdut2012@126.com

收稿日期: 2014-08-06

  修回日期: 2014-11-02

  网络出版日期: 2015-03-19

基金资助

国家科技重大专项(2011ZX05037-003);高等学校博士学科点专项科研基金项目(20125122110017)

Experimental and mechanism research of damage of clean fracturing fluids to coalbed methane

  • ZHOU Jun ,
  • YI Xiangyi ,
  • LU Yuan ,
  • QIU Xiaolong ,
  • YE Jinliang
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  • 1. School of Energy Resources, Chengdu University of Technology, Chengdu 610059, China;
    2. State Key Laboratory of Oil and Gas Geology and Exploitation, Chengdu University of Technology, Chengdu 610059, China;
    3. Brigade 113, Guizhou Bureau of Geology and Mineral Exploration & Development, Liupanshui 553001, China;
    4. Lanzhou LS Energy Equipment Engineering Institute Co., Ltd., Lanzhou 730050, China

Received date: 2014-08-06

  Revised date: 2014-11-02

  Online published: 2015-03-19

摘要

压裂液进入煤层后会带来一定的伤害,影响煤层气的产量。通过实验研究了清洁压裂液对煤层气解吸扩散和渗流的伤害机制。以沁水盆地煤岩为实验样品,利用自主研究的煤岩解吸装置和全模拟流体模拟微观分布实验系统,测试了清洁压裂对煤岩解吸量和地层水渗透率的伤害程度。研究表明,清洁压裂液对煤岩渗透率的伤害为30%,对煤层气解吸量的伤害率为24%,并且推迟了煤层气开始解吸的时间,降低了解吸的速率。通过电镜扫描、润湿性等测试,明确了清洁压裂液对煤岩的伤害机制。

本文引用格式

周珺 , 伊向艺 , 卢渊 , 邱小龙 , 叶金亮 . 清洁压裂液对煤岩储层伤害的实验评价[J]. 科技导报, 2015 , 33(4) : 72 -75 . DOI: 10.3981/j.issn.1000-7857.2015.04.012

Abstract

Coalbed would be damaged by fracturing fluid, which affects coalbed methane production. Clean fracturing fluid is studied through experiments on the diffusion of coalbed methane desorption and seepage damage mechanism to provide a theoretical basis for the selection of coalbed methane well fracturing fluid. Coal 3 from Qinshui basin is selected as test samples to conduct the desorption test after injecting fracturing liquids into the samples by using independently developed CBM desorption experimental apparatus and permeability test by microscopic distribution of fluid simulation experiment system. Research shows that permeability of coal is damaged by 30% and the desorption amount of damage rate is 24%. Clean fracturing fluid may postpone the coalbed methane desorption time and reduce the absorption rate. And then through the electron microscope scanning and wettability analysis, the damage mechanism of coal by clean fracturing fluid is found out.

参考文献

[1] 伊向艺, 雷群, 丁云宏, 等. 煤层气压裂技术及应用[M]. 北京: 石油工业出版社, 2012. Yi Xiangyi, Lei Qun, Ding Yunhong, et al. Coalbed methane fracturing technology and its application[M]. Beijing: Petroleum Industry Press, 2012.
[2] 王国强, 冯三利, 崔会杰. 清洁压裂液在煤层气井压裂中的应用[J]. 天然气工业, 2006(11): 104-106. Wang Guoqiang, Feng Sanli, Cui Huijie. Application of clean fracturing fluid in coalbed gas well fracturing [J]. Natural Gas Industry, 2006(11): 104-106.
[3] 陈尚斌, 朱炎铭, 刘通义, 等. 清洁压裂液对煤层气吸附性能的影响[J]. 煤炭学报, 2009(1): 89-94. Chen Shangbin, Zhu Yanming, Liu Tongyi, et al. IMPact of the clear fracturing fluid on the adsorption properties of CBM [J]. Journal of China Coal Society, 2009(1): 89-94.
[4] 李相臣, 康毅力, 陈德飞, 等. 钻井完井液对煤层气解吸-扩散-渗流过程的影响——以宁武盆地9号煤层为例[J]. 天然气工业, 2014(1): 86-91. Li Xiangchen, Kang Yili, Chen Defei, et al. Effect of drill-in fluids on CBM desorption,diffustion and percolation:A case study of NO.9 Coal Seam of the Ningwu Basin[J]. Natural gas industry, 2014(1): 86-91.
[5] 康毅力, 周来诚, 池晓明, 等. 致密煤岩气藏压裂液损害实验评价[J]. 断块油气田, 2014(2): 269-272. Kang Yili, Zhou Laicheng, Chi Xiaoming, et al. Experimental evaluation on damage induced by fracturing fluids in tight coal rock gas reservoirs[J]. Fault-Block Oil & Gas Field, 2014(2): 269-272.
[6] 徐兵威, 李雷, 何青, 等. 致密砂岩储层压裂液损害机理探讨[J]. 断块油气田, 2013(5): 639-643. Xu Bingwei, Li Lei, He Qing, et al. Discussion on damage mechanism of fracturing fluid in tight sandstone reservoir [J]. Fault-Block Oil & Gas Field, 2013(5): 639-643.
[7] 夏永江, 管保山, 梁利, 等. 表面活性剂对煤层气压裂伤害机理研究[J]. 科技导报, 2014, 32(8): 32-38. Xiang Yongjiang, Guan Baoshan, Liang Li, et al. Fracturing damage of coal bed methane caused by surfactants [J]. Science & Tecnology Review, 2014, 32(8): 32-38.
[8] 张晓宇. 表面活性剂润湿煤体的实验研究[D]. 北京: 中国地质大学, 2010. Zhang Xiaoyu. Experimental study on wetting coal by surfactant [D]. Beijing: China University of Geosciences, 2010.
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