CHEN Lei, YANG Hongqi, XIAO Jingnan, ZHOU Shiming, CHU Yongtao, WEI Zhao. Ultra-Low Density Hollow Microspheres-Nitrogen Foamed Cementing Technology in Block Hangjinqi[J]. Petroleum Drilling Techniques, 2018, 46(3): 34-38. DOI: 10.11911/syztjs.2018049
Citation: CHEN Lei, YANG Hongqi, XIAO Jingnan, ZHOU Shiming, CHU Yongtao, WEI Zhao. Ultra-Low Density Hollow Microspheres-Nitrogen Foamed Cementing Technology in Block Hangjinqi[J]. Petroleum Drilling Techniques, 2018, 46(3): 34-38. DOI: 10.11911/syztjs.2018049

Ultra-Low Density Hollow Microspheres-Nitrogen Foamed Cementing Technology in Block Hangjinqi

More Information
  • Received Date: October 23, 2017
  • Revised Date: March 17, 2018
  • Hollow microspheres-nitrogen foam cementing technology with ultra-low density could potentially solve the problem of cementing leakage in Hangjinqi Block.It could also assure the one-trip safe return of cement slurry to form a complete cement sheath,and the improve the cementing quality and wellbore integrity.An ultra-low density hollow microspheres-nitrogen foamed slurry with a density of 1.15-1.20 kg/L wad developed by charging nitrogen into the low-density hollow microspheres slurry system,and adding foaming agent and foam stabilizer to form a high-pressure nitrogen-charged foaming technique.The matching field choking and back pressure devices were combined with independently designed and developed mechanical nitrogen injection equipment.By doing so,the foamed cementing slurry technology with ultra-low density for pressure management and leakage control was established.The technology has been used to cement the technical casing in 5 wells in Hangjinqi Block,and in each,the slurry was safely returned one time.The average density of downhole hollow microspheres-nitrogen foamed slurry in Well JPH351 is 1.15 kg/L,the length of cemented section is 2 800.00 m,and both have excellent cementing quality.The successful development and application of ultra-low density hollow microspheres-nitrogen foamed cementing slurry technology has provided a new technical approach for addressing cementing leakage problem of low pressure wells in Hangjinqi Block and similar blocks.
  • [1]
    杨海波,曹成章,冯德杰,等.新型低密度水泥减轻材料SXJ-1的研制及应用[J].石油钻探技术,2017,45(4):59-64. YANG Haibo,CAO Chengzhang,FENG Dejie,et al.The development and application of a new low density cement reducer SXJ-1[J].Petroleum Drilling Techniques,2017,45(4):59-64.
    [2]
    李早元,祁凌,刘锐,等.空心微珠低密度水泥环完整性试验研究[J].石油钻探技术,2017,45(3):42-47. LI Zaoyuan,QI Ling,LIU Rui,et al.Experimental study on the integrity of low-density cement sheath with hollow microsphere[J].Petroleum Drilling Techniques,2017,45(3):42-47.
    [3]
    DAVIES D R,HARTOG J J,COBBETT J S.Foamed cement:a cement with many applications[R].SPE 9598,1981.
    [4]
    肖京男,刘建,桑来玉,等.充气泡沫水泥浆固井技术在焦页9井的应用[J].断块油气田,2016,23(6):835-837. XIAO Jingnan,LIU Jian,SANG Laiyu,et al.Application of foamed cement slurry to Jiaoye-9 Well[J].Fault-Block Oil Gas Field,2016,23(6):835-837.
    [5]
    DE ROZIERES J,FERRIERE R.Foamed-cement characterization under down-hole conditions and its impact on job design[J].SPE Production Engineering,1991,6(3):297-304.
    [6]
    GUILLOT D J,LE BASTARD E.Learnings from foamed cement job simulations[R].OTC 23666,2012.
    [7]
    GREEN K,JOHNSON P G,HOBBERSTAD R.Foam cementing on the Eldfisk Field:a case study[R].SPE 79912,2003.
    [8]
    DOOPLY M,ELHANCHA A,DE BRUIJN G,et al.Application of real-time process control and engineering software simulation in foam cementing[R].SPE 168033,2014.
    [9]
    胡伟.泡沫水泥浆体系研究与应用[D].大庆:东北石油大学,2012. HU Wei.Research and application of foam cement slurry system[D].Daqing:Northeast petroleum university,2012.
    [10]
    屈建省,宋有胜,杜慧春.新型泡沫水泥的研究与应用[J].钻井液与完井液,2000,17(4):11-14. QU Jiansheng,SONG Yousheng,DU Huichun.Study and application of a novel foam cement[J].Drilling Fluid Completion Fluid,2000,17(4):11-14.
    [11]
    顾军,高德利,何湘清,等.泡沫水泥固井技术研究[J].天然气工业,2003,23(增刊1):78-80. GU Jun,GAO Deli,HE Xiangqing,et al.Study on cementing technology of foamed cement[J].Natural Gas Industry,2003,23(supplement 1):78-80.
    [12]
    卢国军,王力,胡秋萍,等.泡沫水泥固井技术在沁南盆地煤层气开发中的研究应用[J].西部探矿工程,2017,29(1):32-34. LU Guojun,WANG Li,HU Qiuping,et al.Research and application of cementing technology of foam cement in the development of CBM in Southern Qinshui Basin[J].West-China Exploration Engineering,2017,29(1):32-34.
    [13]
    ISO 10426-4:2004 Petroleum and natural gas industries:cements and materials for well cementing:part 4:preparation and testing of foamed cement slurries at atmospheric pressure[S].
  • Related Articles

    [1]YANG Kunpeng, LI Pengxiao, AO Kangwei, ZHANG Tianyi, XIA Yuanbo, HOU Wei. Ultra-Low Density and Low-Friction Cement Slurry Cementing Technologies in Long Sealing Sections of Fuman Oilfield[J]. Petroleum Drilling Techniques, 2023, 51(6): 64-70. DOI: 10.11911/syztjs.2023060
    [2]WANG Jianyun, ZHANG Hongwei, ZOU Shuqiang, LI Mingjun, WANG Peng. Foamed Cement Slurry Cementing Technology for Low-Pressure and Leakage-ProneLayers of the Shunbei Oil & Gas Field[J]. Petroleum Drilling Techniques, 2022, 50(4): 25-30. DOI: 10.11911/syztjs.2022075
    [3]KUANG Lixin, TAO Qian. Cementing Technology Using a Nitrogen-Filled Foamed Cement Slurry for Horizontal Shale Gas Wells in the Eastern Chongqing Area[J]. Petroleum Drilling Techniques, 2022, 50(3): 39-45. DOI: 10.11911/syztjs.2021103
    [4]WU Tianqian, SONG Wenyu, TAN Lingfang, ZHANG Junyi, YANG Chunwen, GUO Shenglai. Evaluation Method for Cementing Quality of Ultra-Low-Density Cement[J]. Petroleum Drilling Techniques, 2022, 50(1): 65-70. DOI: 10.11911/syztjs.2021111
    [5]JIA Guangliang, SHAO Tong, YIN Xiaoxia, JIANG Shangming, XU Wensi, WANG Yuzhu. Volumetric Fracturing with Mixed Water in Tight Gas Reservoirsin the Hangjinqi Block[J]. Petroleum Drilling Techniques, 2019, 47(2): 87-92. DOI: 10.11911/syztjs.2018143
    [6]SHI Bingzhong, XIE Chao, LI Sheng, LIU Jinhua, CHEN Xiaofei. Development and Application of Drilling Fluid in the Jin-58 Well Block of the Hangjinqi Block[J]. Petroleum Drilling Techniques, 2017, 45(6): 37-41. DOI: 10.11911/syztjs.201706007
    [7]SU Le, GUO Lei, LIU Zhaohua. Low-Density Micro-Foam Drilling Fluid Technology Deployed in Benacat Block, Indonesia[J]. Petroleum Drilling Techniques, 2016, 44(1): 18-22. DOI: 10.11911/syztjs.201601004
    [8]Bu Yuhuan, Song Wenyu, He Yingjun, Shen Zhaochao. Discussion of a Method for Evaluating Cementing Quality with Low-Density Cement Slurries[J]. Petroleum Drilling Techniques, 2015, 43(5): 49-55. DOI: 10.11911/syztjs.201505009
    [9]Sun Kunzhong, Tao Qian, Zhou Shiming, Gao Yuan. Cementing Technology for Deep Shale Gas Horizontal Well in the Dingshan Block[J]. Petroleum Drilling Techniques, 2015, 43(3): 55-60. DOI: 10.11911/syztjs.201503011
    [10]Zhang Jinhong. Key Drilling Completion Techniques for Shale Gas Horizontal Wells in Pengshui Block[J]. Petroleum Drilling Techniques, 2013, 41(5): 9-15. DOI: 10.3969/j.issn.1001-0890.2013.05.002
  • Cited by

    Periodical cited type(14)

    1. 陈雅辉,匡立新,龙志平,陈士奎,王恒. NC页岩气田东胜构造带浅表层防漏治漏工艺. 石油地质与工程. 2023(03): 102-105 .
    2. 陆长青,高元,杨广国,彭金龙. 基于温敏形状记忆聚合物的堵漏水泥浆体系研究. 钻采工艺. 2023(03): 141-146 .
    3. 曾义金. 中国石化深层超深层油气井固井技术新进展与发展建议. 石油钻探技术. 2023(04): 66-73 . 本站查看
    4. 吴天乾,宋文宇,谭凌方,张军义,杨春文,郭胜来. 超低密度水泥固井质量评价方法. 石油钻探技术. 2022(01): 65-70 . 本站查看
    5. 谢关宝. 轻质水泥浆固井质量测井评价标准构建. 石油钻探技术. 2022(01): 119-126 . 本站查看
    6. 袁光杰,付利,王元,郭凯杰,陈刚. 我国非常规油气经济有效开发钻井完井技术现状与发展建议. 石油钻探技术. 2022(01): 1-12 . 本站查看
    7. 匡立新,刘奎,丁士东,初永涛,周仕明,姜政华,肖京男. 机械充氮泡沫水泥浆固井技术在页岩气井的应用. 石油机械. 2022(07): 26-33 .
    8. 王建云,张红卫,邹书强,李明军,王鹏. 顺北油气田低压易漏层泡沫水泥浆固井技术. 石油钻探技术. 2022(04): 25-30 . 本站查看
    9. 路飞飞,于洋,王伟志,李明军. 顺北油气田防漏固井用封隔式分级箍研制与应用. 石油钻探技术. 2022(04): 31-36 . 本站查看
    10. 陈晓华,狄伟. 针对裂缝性地层的低密度高强度韧性水泥浆体系研究. 钻井液与完井液. 2021(01): 109-115 .
    11. 吴天乾,李明忠,李建新,李德红,张军义,何斌斌. 杭锦旗地区正注反挤固井技术研究. 钻采工艺. 2021(03): 104-107 .
    12. 张辉. 超低密度水泥浆的复合减轻剂研究及应用. 重庆科技学院学报(自然科学版). 2020(03): 7-10+43 .
    13. 陈铧. 封固气层的泡沫水泥浆固井技术研究. 中国石油和化工标准与质量. 2019(10): 213-214 .
    14. 林四元,张杰,韩成,胡杰,田宗强,郑浩鹏. 东方气田浅部储层大位移水平井钻井关键技术. 石油钻探技术. 2019(05): 17-21 . 本站查看

    Other cited types(2)

Catalog

    Article Metrics

    Article views (5094) PDF downloads (7480) Cited by(16)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return