Volume 33 Issue 6
Nov.  2016
Turn off MathJax
Article Contents
FU Meilong, HU Zewen, HUANG Qian, TANG Fang. Key FactorsAffecting Damage by Fracturing Fluidsto Jiannan Tight Sandstone Gas Reservoir[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(6): 116-120. doi: 10.3969/j.issn.1001-5620.2016.06.021
Citation: FU Meilong, HU Zewen, HUANG Qian, TANG Fang. Key FactorsAffecting Damage by Fracturing Fluidsto Jiannan Tight Sandstone Gas Reservoir[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(6): 116-120. doi: 10.3969/j.issn.1001-5620.2016.06.021

Key FactorsAffecting Damage by Fracturing Fluidsto Jiannan Tight Sandstone Gas Reservoir

doi: 10.3969/j.issn.1001-5620.2016.06.021
  • Received Date: 2016-07-25
  • Publish Date: 2016-11-30
  • Carboxymethyl hydroxypropyl guar gum fracturing fluid, an oligomer fracturing fluid and hydroxypropyl guar gum fracturing fluid are used in fracturing the tight sandstone gas reservoirs in Jian'nan block. In recent laboratory experiments, the viscosity, surface tension and residue of the three fracturing fluids after gel-breaking were measured. It was found that there were some differences in the properties of these three fracturing fluids after gel breaking. The measurement of core damage has shown that the ratio of cores' water block damage (65%-80%) was far greater than the ratio of cores' matrix damage (5%-15%), indicating that water block damage was the main damage to reservoir permeability. The ratio of matrix damage and the ratio of water block damage are not only related to the properties of fracturing fluid, they are also related to core permeability and lithology. Through decomposition experiment, it was understood that the amount of residue of fracturing fluid was the key factor affecting matrix damage, and the core permeability was the key factor affecting water block damage. Experiment on water block removal has shown that cores with severe water block damage can have permeability increases by more than 70% after removing waterblock, indicating that the measures of removing water block did work.

     

  • loading
  • [1]
    陈馥, 李钦. 压裂液伤害性研究[J]. 天然气工业, 2006, 26(1):109-111.

    CHEN Fu, LI Qin. A study of formation damage of fracturing fluid[J]. Natural Gas Industry, 2006, 26(1):109-111.
    [2]
    GALL B L, SATTLER A R, MALONEY D R, et al. Permeability damage to natural fractures caused by fracturing fluid polymers[C]//SPE rocky mountain regional meeting. Society of Petroleum Engineers, 1988.
    [3]
    杨永利. 低渗透油藏水锁伤害机理及解水锁实验研究[J]. 西南石油大学学报(自然科学版), 2013, 35(3):137-141. YANG Yongli. Study of water locking damage and mechanism and water unlocking permeability reservoir[J]. Journal of Southwest Petroleum University:Science and Technology Edition, 2013, 35(3):137-141.
    [4]
    TINER R L, STAHL JR E J, MALONE W T. Developments in fluids to reduce potential damage from fracturing treatments[C]//SPE Symposium on Formation Damage Control. Society of Petroleum Engineers, 1974.
    [5]
    丁绍卿, 郭和坤. 应用核磁共振技术研究压裂液伤害机理[J]. 钻井液与完井液, 2006, 23(3):60-62.

    DING Shaoqing, GUO Hekun. Research on the damage mechanism of fracturing fluids through nuclear magnetic resonance technology[J]. Drilling Fluid & Completion Fluid, 2006, 23(3):60-62.
    [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, 20(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 and Gas Field, 2013,20(5):639-643.
    [7]
    庄照峰, 张士诚, 李宗田, 等. 压裂液伤害程度表示方法探讨[J]. 油气地质与采收率, 2010, 17(5):108-110.

    ZHUANG Zhaofeng, ZHANG Shicheng, LI Zongtian, et al. Discussion on the index of fracturing fluid damage[J]. Petroleum Geology And Recovery Efficiency, 2010, 17(5):108-110.
    [8]
    WEAVER J D, SCHULTHEISS N C, LIANG F. Fracturing fluid conductivity damage and recovery efficiency[C]//SPE european formation damage conference & exhibition. Society of Petroleum Engineers, 2013.
    [9]
    管保山, 周焕顺, 程玉梅, 等. 鄂尔多斯盆地西峰油田压裂液对储层伤害的微观机理研究[J]. 中国石油勘探, 2007,(4):59-62. GUAN Baoshan, ZHOU Huanshun, CHENG Yumei, et al. Microcosmic analysis of damage of fracturing fluids to reservoirs in Xifeng oilfield of Ordos basin[J].China Petroleum Exploration, 2007

    ,(4):59-62.
    [10]
    F E D O R O V A, C A R R A S Q U I L L A J, C O X A. Avoiding damage associated to produced water use in hydraulic fracturing[C]//SPE International Symposium and Exhibition on Formation Damage Control. Society of Petroleum Engineers, 2014.
    [11]
    李志刚, 乌效鸣, 李子丰, 等. 低压低渗气藏低伤害压裂液研究与应用[J]. 钻井液与完井液, 2005, 22(3):34-37.

    LI Zhigang, WU Xiaoming, LI Zifeng, et al. Premium n2 energized aqueous fracturing fluid of low-pressure and tight gas reservoir[J]. Drilling Fluid & Completion Fluid, 2005, 22(3):34-37.
    [12]
    黄禹忠, 任山, 林永茂, 等. 川西低渗致密气藏低伤害压裂技术研究及应用[J]. 钻采工艺, 2009, 32(1):33-35.

    HUANG Yuzhong, REN shan, LIN Yongmao, et al. Research and application of low damage frac technology for low permeability and tight gas field in western Sichuan[J]. Drilling and Production Technology, 2009, 32(1):33-35.
    [13]
    GUPTA D V. Unconventional fracturing fluids for tight gas reservoirs[C]//SPE Hydraulic Fracturing Technology Conference. Society of Petroleum Engineers, 2009.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (509) PDF downloads(239) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return