FAN Jin, LI Juncai, WANG Jun. Highly Inhibitive Polymer Drilling Fluid Help Resolved Problem of Low Recycling Rate of Drilling Fluid Use to Drill Fat Holes in ChuanYu Area[J]. DRILLING FLUID & COMPLETION FLUID, 2020, 37(3): 313-318,326. doi: 10.3969/j.issn.1001-5620.2020.03.008
Citation: FAN Jin, LI Juncai, WANG Jun. Highly Inhibitive Polymer Drilling Fluid Help Resolved Problem of Low Recycling Rate of Drilling Fluid Use to Drill Fat Holes in ChuanYu Area[J]. DRILLING FLUID & COMPLETION FLUID, 2020, 37(3): 313-318,326. doi: 10.3969/j.issn.1001-5620.2020.03.008

Highly Inhibitive Polymer Drilling Fluid Help Resolved Problem of Low Recycling Rate of Drilling Fluid Use to Drill Fat Holes in ChuanYu Area

doi: 10.3969/j.issn.1001-5620.2020.03.008
  • Received Date: 2020-01-13
  • Publish Date: 2020-06-28
  • Drilling fluids used to drill fat hole in ChuanYu area always have high density, high viscosity and high content of poor-quality solids, making them difficult to reuse. Disposal of them as waste drilling fluids greatly increases operational cost and environmental risks. Analyses of the mineral components of formation rocks taken from the fat hole sections show that the clay minerals in the rock contain more than 70% illite and illite/smectite mixed layer mineral. Exchangeable cations, such as calcium and magnesium ions, are adsorbed onto the surfaces of clay particles, rendering clay particles high activity and hydrophilicity. These clay particles are thus very easy to hydrate, swell and disperse when in contact with water. Mudstone samples were taken from the Sha2 member in Moxi, ChuanYu area for inhibition test. Since calcium ions inhibit clay hydration by reducing water activity and suppressing electric double layer of clay particles, a mechanism different than that of potassium ions, it was concluded that the synergy of calcium ions and potassium ions is better than using just calcium ions or potassium ions to inhibit clay minerals. An optimum ratio of calcium ions over potassium ions was selected through laboratory experiment. By introducing intercalation and hydrophobic inhibitive agents into the drilling fluid, it was found that a drilling fluid with optimum concentration of calcium/potassium, intercalation and hydrophobic additives has the strongest inhibitive capacity. Based on this idea, a highly inhibitive polymer drilling fluid was formulated with selected inhibitive additives and WN2-2, a salt-resistant polymer. Tis drilling fluid is suitable for use to drill the fat hole sections in ChuanYu area. It has very strong inhibitive capacity, greatly inhibit the clay formation from hydration and dispersion. Comparison of the drilling operation of the well Mox-009, well Moxi-022 and well Moxi-019 shows that the highly inhibitive polymer drilling fluid, which was used to drill the well Moxi-019, was recycled by 75%, while the drilling fluids used to drill the other two wells were not recycled. This highly inhibitive polymer drilling fluid is worth spreading for its high rate of recycling.

     

  • [1]
    邹渝萍. 聚胺仿油基钻井液技术研究及在川西地区的应用[D]. 成都:西南石油大学, 2015. ZOU Yuping. Study on the technology of polyamine oilbased drilling fluid and its application in Western Sichuan[D]. Chengdu:Southwest Petroleum University, 2015.
    [2]
    鄢捷年:钻井液工艺学[M]. 山东:石油大学出版社, 2001:26-43. YAN Jienian. Drilling fluid technology[M]. Shandong:Petroleum University Press, 2001:26

    -43.
    [3]
    尤源, 梁晓伟, 冯胜斌, 等. 鄂尔多斯盆地长7段致密储层主要黏土矿物特征及其地质意义[J]. 天然气地球科学, 2019, 30(8):1233-1241.

    YOU Yuan, LIANG Xiaowei, FENG Shengbin, et al. Features and geological significance of main clay minerals in Chang 7 tight sandstone reservoir, Ordos Basin[J]. Natural Gas Geoscience, 2019, 30(8):1233-1241.
    [4]
    雷又层,向兴金. 泥页岩分类简述[J]. 钻井液与完井液, 2007, 24(2):63-66.

    LEI Youceng, XIANG Xingjin. Summary of shale classification[J]. Drilling Fluid & Completion Fluid, 2007, 24(2):63-66.
    [5]
    冯强. 四川红层泥岩的分布及其路用性能研究[D]. 成都:西南交通大学, 2011. FENG Qiang. Study on distribution and road performance of Sichuan red mudstone[D]. Chengdu:Southwest Jiaotong University, 2011.
    [6]
    曹峰. 钻井液与泥页岩间传递作用对井壁稳定的影响研究[D]. 西安:西安石油大学, 2009. CAO Feng. Study on the influence of the transfer between drilling fluid and mud-shale on wellbore stability[D]. Xi'an:Xi'an Shiyou University, 2009.
    [7]
    冯云春, 来梅花. 有机盐强抑制润滑钻井液研究及应用[J]. 石油天然气学报(江汉石油学院学报), 2014, 36(7):112-116. FENG Yunchun, LAI Meihua. Research and application of organic salt strong inhibition lubricating drilling fluid[J]. Journal of Oil and Gas Technology(J.JPI), 2014, 36(7):112-116.
    [8]
    郭娜娜. 钻井液用抑制剂的研究及性能评价[D]. 成都:西南石油大学, 2014. GUO Nana. Research and performance evaluation of inhibitors for drilling fluid[D]. Chengdu:Southwest Petroleum University, 2014.
    [9]
    钟汉毅. 聚胺强抑制剂研究及其作用机理研究[D]. 青岛:中国石油大学, 2012. ZHONG Hanyi. Study on the strong polyamine inhibitor and its mechanism[D]. Qingdao:China University of Petroleum, 2012.
    [10]
    邱正松, 李健鹰, 郭东荣, 等. 钾离子和钙离子协同抑制作用的探讨[J]. 钻井液与完井液, 1994, 11(4):1-8.

    QIU Zhengsong,LI Jianying,GUO Dongrong,et al. Discussion on synergistic inhibition of potassium and calcium ion[J]. Drilling Fluid & Completion Fluid, 1994,11(4):1-8.
    [11]
    褚奇,李涛,张天笑,等. 金山气田强抑制防塌钻井液研究与应用[J]. 科学技术与工程,2014,14(22):34-39.

    CHU Qi,LI Tao,ZHANG Tianxiao,et al. Research and application of high inhibitive and anti-sloughing drilling fluid in Jinshan gas field[J]. Science Technology and Engineering,2014,14(22):34-39.
    [12]
    钟汉毅,邱正松,黄维安,等. 胺类页岩抑制剂特点及研究进展[J]. 石油钻探技术,2010,38(1):104-108.

    ZHONG Hanyi,QIU Zhengsong,HUANG Weian,et al. Development and features of amine shale inhibitors[J]. Petroleum Drilling Techniques,2010,38(1):104-108.
    [13]
    钟汉毅,黄维安,邱正松,等. 聚胺与氯化钾抑制性的对比实验研究[J]. 西南石油大学学报(自然科学版), 2012,34(3):150-156. ZHONG Hanyi,HUANG Weian,QIU Zhengsong,et al. Experimental study of the shale inhibition between polyamine and potassium chloride[J]. Journal of Southwest Petroleum University(Science & Technology Edition),2012,34(3):150-156.
    [14]
    ASTON M S,ELLIOTT G P. Water-based glycol dirlling muds:shale inhibition mechanisms.[J].SPE 28818,1994.
    [15]
    MODY F K,HALE A H. Borehole-stability model to couple the mechanics and chemistry of dirlling-fluid/shale interactions[J]. SPE 25728,1993.
    [16]
    蒋官澄,董腾飞,张县民,等. XZ-新型高性能水基钻井液的研究及应用[J]. 钻井液与完井液,2018,35(2):49-55.

    JIANG Guanchen,DONG Tengfei,ZHANG Xianmin, et al. Study and application of a new high performance water base drilling fluid XZ[J]. Drilling Fluid & Completion Fluid,2018,35(2):49-55.
    [17]
    许明标,张春阳,徐博韬,等. 一种新型高性能聚胺聚合物钻井液的研制[J]. 天然气工业,2008,28(12):51-53.

    XU Mingbiao,ZHANG Chunyang,XU Botao,et al. Study on a new high performance polyamine polymer drilling fluid[J]. Nature Gas Industry,2008,28(12):51-53.
  • Relative Articles

    [1]LIU Huaizhu, ZHAO Kangning, CHEN Dong, ZHANG Chao, CHANG Xiaofeng, ZHANG Jie, ZHANG Wangyuan, ZHANG Fan. Recycling in Drilling Fluids of Flowback Fluids from Slick Water Fracturing Operation[J]. DRILLING FLUID & COMPLETION FLUID, 2025, 42(1): 127-133. doi: 10.12358/j.issn.1001-5620.2025.01.014
    [2]WANG Weiji, GAO Wei, FAN Sheng, XUAN Yang, DONG Xiaoqiang. The Development and Application of a New Environmentally Friendly Low Friction Non-Sulfonate Drilling Fluid[J]. DRILLING FLUID & COMPLETION FLUID, 2022, 39(4): 459-465. doi: 10.12358/j.issn.1001-5620.2022.04.010
    [3]XU Yi, XU Guili, JIANG Guancheng. Synthesis and Application of an Environmentally Friendly Modified Bio-Peptide Shale Inhibitor for Water Based Drilling Fluids[J]. DRILLING FLUID & COMPLETION FLUID, 2022, 39(3): 301-306. doi: 10.12358/j.issn.1001-5620.2022.03.006
    [4]SHEN Jinwei, YUAN Wenkui, ZHAO Jian, CHEN Lei, LI Meng, SUN Houtai. Study on Formulating Fracturing Fluids with Used Fracturing Fluids for Tight Gas Reservoirs[J]. DRILLING FLUID & COMPLETION FLUID, 2022, 39(2): 241-247. doi: 10.12358/j.issn.1001-5620.2022.02.018
    [5]XIA Jinggang, SHI Ye, ZUO Hongguo, ZHOU Zhiqiang, JIANG Likun, HOU Jianqing. An Environmentally Friendly High Temperature Drilling Fluid Technology[J]. DRILLING FLUID & COMPLETION FLUID, 2020, 37(1): 59-63. doi: 10.3969/j.issn.1001-5620.2020.01.009
    [6]ZHANG Rui, XU Jiafang, GU Tiantian, DING Tingji, YU Zhenglian, LI Liwen, LUO Hai. Development of a Filter Loss Reducer for Palm Oil Base Drilling Fluid[J]. DRILLING FLUID & COMPLETION FLUID, 2017, 34(6): 29-34. doi: 10.3969/j.issn.1001-5620.2017.06.006
    [7]XIE Jun, SI Xiqiang, LEI Zumeng, LI Hongxing, JIA Baoxu. Research and Application of OBM-like Water Base Drilling Fluid[J]. DRILLING FLUID & COMPLETION FLUID, 2017, 34(4): 26-31. doi: 10.3969/j.issn.1001-5620.2017.04.005
    [8]MA Hong, HUANG Daquan, LI Guanghuan, ZHANG Aishun, LONG Tao, CAO Ziying, WANG Yundong, SU Jun. Laboratory Study on Recycling of Flowback Fluid of Guar Gun Fracturing Fluid[J]. DRILLING FLUID & COMPLETION FLUID, 2017, 34(4): 122-126. doi: 10.3969/j.issn.1001-5620.2017.04.023
    [9]HU Zubiao, WANG Qingchen, CHEN Tingting. Treatment and use of Waste Drilling Fluid with Existing Solids Control Equipment[J]. DRILLING FLUID & COMPLETION FLUID, 2017, 34(1): 92-95. doi: 10.3969/j.issn.1001-5620.2017.01.017
    [10]XU Yunlong, XU Dui, ZHANG Xiaoming, XIA Wenan, LIU Tianke, SUN Ronghua. Application of Drilling Fluid Zero-discharge Technology in Bailu Lake Multi-well Pad[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(6): 63-67. doi: 10.3969/j.issn.1001-5620.2016.06.011
    [11]ZHENG Yuhui, JIANG Zhenwei, FAN Fan. Calcium Nitrate Treated Polyamine Drilling Fluid Technology[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(2): 50-54. doi: 10.3969/j.issn.1001-5620.2016.02.011
    [12]LONG Daqing, FAN Xiangsheng, WANG Kun, FAN Jianguo, LUO Renwen. High Performance Water Base Drilling Fluid for Shale Gas Drilling[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(1): 17-21. doi: 10.3969/j.issn.1001-5620.2016.01.004
    [13]HOU Jie, LIU Yonggui, SONG Guangshun, SONG Tao, YAN Jing, ZHAO Xiaozhu. Synthesis and Application of a New High Temperature High Performance Salt Resistant Shale Inhibitor[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(1): 22-27. doi: 10.3969/j.issn.1001-5620.2016.01.005
    [14]CHENG Yusheng, ZHANG Liquan, MO Tianming, XIANG Xiong, ZHANG Ming. Solids Control and Re-use of Water Base Drilling Fluid in Beibu Gulf[J]. DRILLING FLUID & COMPLETION FLUID, 2016, 33(2): 60-63. doi: 10.3969/j.issn.1001-5620.2016.02.013
    [15]ZHANG Xiang, ZHAO Fengchen, CAO Xiaohui, WEI Yonghong, XU Yang. Recycling of Drilling Fluids in Sulige Gasfield[J]. DRILLING FLUID & COMPLETION FLUID, 2015, 32(3): 99-102. doi: 10.3969/j.issn.1001-5620.2015.03.028
    [16]TENG Xueqing, ZHANG Jie, ZHU Jinzhi, WANG Shuangwei, ZHAO Zhiliang, ZHAO Ze. Permeability Impairment and Reservoir Protection for Tight Sand Gas Reservoir in Block Dina-3[J]. DRILLING FLUID & COMPLETION FLUID, 2015, 32(1): 18-21. doi: 10.3969/j.issn.1001-5620.2015.01.005
    [17]LI Guanghuan, WU Wenru, HUANG Daquan, MA Hong, GU Yanfeng, CHEN Jianxin, LONG Tao, LI Yecheng. Development of New Gel-breaking Flocculant for Waste Water Base Drilling Fluid Treatment[J]. DRILLING FLUID & COMPLETION FLUID, 2015, 32(5): 46-48,53. doi: 10.3969/j.issn.1001-5620.2015.05.011
    [18]LIU Lihong, CHEN Jiangming, LIU Tongyi, DAI Xiulan, . Study on Reuse of Fracturing Fluid in Oil and Gas Fields in Northeast China[J]. DRILLING FLUID & COMPLETION FLUID, 2015, 32(4): 92-95. doi: 10.3969/j.issn.1001-5620.2015.04.025
  • Cited by

    Periodical cited type(3)

    1. 江显俊,肖金裕,兰太华,傅相友,贾兴明. FT1井非标大井眼超深井钻井液技术优化及应用. 天然气勘探与开发. 2024(01): 63-72 .
    2. 徐毅,许桂莉,蒋官澄. 环保型改性生物多肽水基钻井液抑制剂的合成与应用. 钻井液与完井液. 2022(03): 301-306 . 本站查看
    3. 张鹏. 渤海中深层井壁强化技术研究与应用. 石油化工应用. 2022(07): 21-25 .

    Other cited types(0)

  • 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 (775) PDF downloads(141) Cited by(3)
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return