1 |
DONNELLY J . The third international oil technology conference-focusing on future energy needs[J]. Foreign Oil & Gas Information, 2009(8): 8-9.
|
2 |
WILLIAMS D A . Crosslinker composition for high temperature hydraulic fracturing fluids: US4534870[P]. 1985-08-13.
|
3 |
MITCHELL T O , PARRIS M D . High temperature hydraulic fracturing fluid: US6227295[P]. 2001-05-08.
|
4 |
何志勇, 程运甫, 冯敬红 . 大港油田深探井压裂改造技术[J]. 钻采工艺, 2003,26(6): 34-38.
|
|
HE Zhiyong , CHENG Yunpu , FENG Jinghong . Fracturing technology of deep exploration well in Dagang oilfield[J]. Drilling & Production Technology, 2003, 26(6): 34-38.
|
5 |
张应安, 刘光玉, 周学平, 等 . 新型羧甲基胍胶超高温压裂液在松辽盆地南部深层火山岩气井的应用[J]. 中国石油勘探, 2009, 14(4): 70-73.
|
|
ZHANG Yingan , LIU Guangyu , ZHOU Xueping , et al . Application of new CMG ultra-high temperature fracturing fluid to deep volcanic gas wells in southern Songliao basin[J]. China Petroleum Exploration, 2009, 14(4): 70-73.
|
6 |
翟文, 王丽伟, 邱晓慧, 等 . 240℃超聚合物高温压裂液耐温机理及流变性研究[C]//第十二届全国流变学学术会议, 2014.
|
|
ZHAI Wen , WANG Liwei , QIU Xiaohui , et al . Rheological behaviors and temperature resistant mechanism of an ultra-high temperature fracturing fluid[C]//The 12th National Academic Conference on Rheology, 2014.
|
7 |
PAUL L D , WEAVER J D , SULEIMAN I M . Low damage seawater based frac pack fluid: US8590621[P]. 2013-11-26.
|
8 |
SATYA GUPTA D V . Fracturing fluid for extreme temperature conditions is just as easy as the rest[C]// SPE140176, 2011.
|
9 |
BARATI R , JOHNSON S J , MCCOOL S , et al . Fracturing fluid cleanup by controlled release of enzymes from polyelectrolyte complex nanoparticles[J]. Journal of Applied Polymer Science, 2011, 121(3): 1292-1298.
|
10 |
BARATI R , JOHNSON S J , MCCOOL S , et al . Polyelectrolyte complex nanoparticles for protection and delayed release of enzymes in alkaline pH and at elevated temperature during hydraulic fracturing of oil wells[J]. Journal of Applied Polymer Science, 2012, 126(2): 587-592.
|
11 |
VO L K, BIYANI M V , CORTEZ J , et al . Development of seawater-based fracturing fluid for high-temperature wells[C]// SPE Asia Pacific Hydraulic Fracturing Conference, 2016.
|
12 |
BINGHANIM A , MUAS AL-HUSSAIN ALI , PRASAD KARADKAR , et al . High-temperature fracturing fluid based on nanofiltered seawater[C]// SPE Kingdom of Saudi Arabia Technical Symposium & Exhibition, 2017.
|
13 |
张大年, 赵崇镇, 范凌霄, 等 . 海水基植物胶压裂液体系快速制备及性能评价[J]. 中国海上油气, 2016, 28(6): 95-98.
|
|
ZHANG Danian , ZHAO Chongzhen , FAN Lingxiao , et al . Rapid preparation and performance evaluation of a seawater-based vegetable gum fracturing liquid[J]. China Offshore Oil and Gas, 2016, 28(6): 95-98.
|
14 |
李小凡, 于柏慧, 马新仿, 等 . 耐高温低伤害压裂液配方优化评价研究[J]. 科学技术与工程, 2016, 16(15): 192-195.
|
|
LI Xiaofan , YU Baihui , Xinfang MA , et al . Experimental research on the optimization of high temperature resistance fracturing fluid system[J]. Science Technology and Engineering, 2016, 16(15): 192-195.
|
15 |
张大年, 张锁兵, 赵孟云, 等 . 液体胍胶制备方法及其耐高温体系性能[J]. 油田化学, 2014, 31(2): 203-206.
|
|
ZHANG Danian , ZHANG Suobing , ZHAO Mengyun , et al . Preparation method of liquid guar gum and high temperature resistant performance of hydraulic fracturing fluid[J]. Oilfield Chemistry, 2014, 31(2): 203-206.
|
16 |
XIAO B , ZHANG S C , GUO T K , et al . Experimental investigation and performance evaluation of a novel high temperature tolerant seawater-based fracturing fluid[J]. Water Resour Manage, 2014, 28(10): 2767-2779.
|
17 |
辛军, 郭建春, 赵金洲, 等 . 新型超高温压裂液体系研制与评价[J]. 钻井液与完井液, 2009, 26(6): 49-52.
|
|
XIN Jun , GUO Jianchun , ZHAO Jinzhou , et al . The development and evaluation of a new ultra-high temperature fracturing fluid[J]. Drilling Fluid & Completion Fluid, 2009, 26(6): 49-52.
|
18 |
孟宪波, 周汉国 . 超高温压裂液在国内压裂井的首次应用[J]. 油气井测试, 2014, 23(2): 68-70.
|
|
MENG Xianbo , ZHOU Hanguo . The first application of the ultra-high temperature fracturing fluid in national fractured well[J]. Well Testing, 2014, 23(2): 68-70.
|
19 |
罗攀登, 张俊江, 鄢宇杰, 等 . 耐高温低浓度瓜胶压裂液研究与应用[J]. 钻井液与完井液, 2015, 32(5): 86-88.
|
|
LUO Pandeng , ZHANG Junjiang , YAN Yujie , et al . Study and application of high temperature low concentration guar gum fracturing fluid[J]. Drilling Fluid & Completion Fluid, 2015, 32(5): 86-88.
|
20 |
刘彝, 李良川, 刘京, 等 . 低浓度胍胶压裂液在高温大斜度井中的应用研究[J]. 钻采工艺, 2015, 38(4): 89-92.
|
|
LIU Yi , LI Liangchuan , LIU Jing , et al . Research and application of low concentration guar fracturing fluid in highly-deviated wells with high temperature[J]. Drilling & Production Technology, 2015, 38(4): 89-92.
|
21 |
周珺, 贾文峰, 蒋廷学, 等 . 耐高温超低浓度纳米胍胶压裂液性能评价研究[J]. 现代化工, 2017, 37(5): 59-63.
|
|
ZHOU Jun , JIA Wenfeng , JIANG Tingxue , et al . Performance evaluation of high temperature ultra-low concentration nanometer HPC fracturing fluid[J]. Modern Chemical Industry, 2017, 37(5): 59-63.
|
22 |
吴俣昊, 欧阳传湘, 闫梦 . 低浓度低伤害胍胶压裂液室内实验评价[J]. 当代化工, 2018, 47(3): 458-461.
|
|
WU Yuhao , OUYANG Chuanyang , YAN Meng . Performance evaluation of low concentration and low damage guanidine gum fracturing fluid in laboratory[J]. Contemporary Chemical Industry, 2018, 47(3): 458-461.
|
23 |
SAMUEL M , CARD R , NELSON E , et al . Ploymer-free fluid for hydraulic fracturing[C]// SPE38622, 1997.
|
24 |
MATHEW S . Viscoelatic surfactant fracturing fluids;applications in low permeability reservoirs[C]// SPE60322, 2000
|
25 |
WHALEN R T . Viscoelastic surfactant fracturing fluids and a method for fracturing subterranean formation: US6035936[P]. 2000-03-14.
|
26 |
Services Company BJ . AquaClear fracturing fluids product information[EB/OL]. (2005-09-06)[2012-02-13]. http: // .
|
27 |
MAXEY J , CREWS J , HUANG T . Nanoparticle associated surfactant micellar fluids[C]// ALBERT C. AIP Conference Proceedings. Monterey, California: AIP Publishing, 2008: 857–859.
|
28 |
NASRELDIN H A , GURLUK M R , CREWS J B . Enhancing the performance of viscoelastic surfactant fluids using nanoparticles[C]//75th EAGE Conference and Exhibition Incorporating. SPE Europe, 2013.
|
29 |
ZANTEN R V . Stabilizing viscoelastic surfactants in high density brines[J]. SPE Drilling & Completion, 2011, 26: 499-505.
|
30 |
江波, 张灯, 李东平, 等 . 耐温VES压裂液SCF的性能[J]. 油田化学, 2003, 20(4): 332-334.
|
|
JIANG Bo , ZHANG Deng , LI Dongping , et al . Performance properties of heat resistant viscoelastic surfactant fracturing fluid SCF[J]. Oilfield Chemistry, 2003, 20(4): 332-334.
|
31 |
毛金成, 杨小江, 宋志峰, 等 . 耐高温清洁压裂液体系HT-160的研制及性能评价[J]. 石油钻探技术, 2017, 45(6): 105-109.
|
|
MAO Jincheng , YANG Xiaojiang , SONG Zhifeng , et al . Development and performance evaluation of high temperature resistant clean fracturing fluid system HT-160[J]. Petroleum Drilling Techniques, 2017, 45(6): 105-109.
|
32 |
赵海洋, 张士诚 . 高温清洁压裂液在塔河油田的应用[J]. 大庆石油地质与开发, 2014, 33(6): 100-103.
|
|
ZHAO Haiyang , ZHANG Shicheng . Application of the high-temperature clean fracturing fluid in Tahe oilfield[J]. Petroleum Geology and Oilfield Development in Daqing, 2014, 33(6): 100-103.
|
33 |
丁昊明, 戴彩丽, 由庆, 等 . 耐高温FRK-VES清洁压裂液性能评价[J]. 油田化学, 2011, 28(3): 318-322.
|
|
DING Haoming , DAI Caili , YOU Qing , et al . Performance evaluation of FRK-VES clean fracturing fluid with high temperature resistance[J]. Oilfield Chemistry, 2011, 28(3): 318-322.
|
34 |
郭辉, 庄玉伟, 褚艳红, 等 . 耐高温清洁压裂液的制备与性能研究[J]. 油田化学, 2017, 34(4): 590-593.
|
|
GUO Hui , ZHUANG Yuwei , CHU Yanhong , et al . Preparation and performance evaluation of cleaning fracturing fluid with high temperature resistance[J]. Oilfield Chemistry, 2017, 34(4): 590-593.
|
35 |
乐雷, 秦文龙, 杨江 . 一种耐高温低伤害纳米复合清洁压裂液性能评价[J]. 石油与天然气化工, 2016, 25(6): 65-69.
|
|
LE Lei , QIN Wenlong , YANG Jiang . Performance evaluation of a high temperature-resistant & low damage nano-VES fluids[J]. Chemical Engineering of Oil & Gas, 2016, 25(6): 65-69.
|
36 |
ADEGBOLA K , BONEY C . Effect of fracture face damage on well productivity[C]//International symposium and exhibition on formation damage control. Society of Petroleum Engineers, 2002.
|
37 |
FUNKHOUSER G P , HOLTSCLAW J , BLEVINS J . Hydraulic fracturing under extreme HPHT conditions: successful application of a new synthetic fluid in south Texas gas wells[C]// SPE132173, 2010.
|
38 |
Al-MUNTASHERI G , LIANG F , OW H, et al . High temperature fracturing fluids with nano-crosslinkers: US9862878[P]. 2018.
|
39 |
FUNKHOUSER G P , SAINI R K , MUKHERJEE A . High temperature fracturing fluids and methods: US8450252[P]. 2013.
|
40 |
LIANG F , AL-MUNTASHERI G , LI L . High temperature fracturing fluids with nanoparticles: US20170037302[P]. 2017.
|
41 |
陈效领, 李帅帅 . 超高温聚合物压裂液体系室内研究[J]. 化工管理, 2017(2): 43-45.
|
|
CHEN Xiaoling , LI Shuaishuai . Laboratory study on ultra-high temperature polymer fracturing fluid[J]. Chemical Enterprise Management, 2017(2): 43-45.
|
42 |
段贵府, 胥云, 卢拥军, 等 . 耐超高温压裂液体系研究与现场试验[J]. 钻井液与完井液, 2014, 31(3): 75-77.
|
|
DUAN Guifu , XU Yun , LU Yongjun , et al . Study and field application of an ultraHigh temperature fracturing fluid[J]. Drilling Fluid & Completion Fluid, 2014, 31(3): 75-77.
|
43 |
刘通义, 于毅, 赵众从, 等 . 一种低伤害海水基压裂液体系[J]. 钻井液与完井液, 2015, 32(6): 68-71.
|
|
LIU Tongyi , YU Yi , ZHAO Zhongcong , et al . Study on damage seawater base fracturing fluids[J]. Drilling Fluid & Completion Fluid, 2015, 32(6): 68-71.
|
44 |
HOLTSCLAW J , FUNKEHOUSER G P . A crosslinkable synthetic polymer system for high-temperature hydraulic fracturing applications[J]. SPE Drilling & Comletion, 2010, 25(4): 555-563.
|
45 |
JAIN S , PRESTRIDGE A , DELLORUSSO P . et al . Case study from 12 successful years of high temperature fracturing in Bach Ho field offshore vietnam[C]// SPE 106712, 2007.
|
46 |
翟文, 邱晓慧, 何良好, 等 . 一种耐200℃超高温聚合物型压裂液体系
|
|
[C] //流变学进展, 第十二届全国流变学学术会议 . 2012.
|
|
ZHAI Wen , QIU Xiaohui , HE Lianghao , et al . The research of ultrahigh temperature polymer fracturing fluid system at 200℃[C]//Development of Rheological, 2012.
|
47 |
吴伟, 高艳敏, 张晓云 . 一种高温嵌段式聚合物水基压裂液的室内研究[J]. 钻井液与完井液, 2010, 27(1): 68-70.
|
|
WU Wei , GAO Yanmin , ZHANG Xiaoyun . Laboratory study of a high temperature block polymer water base fracturing fluid[J]. Drilling Fluid & Completion Fluid, 2010, 27(1): 68-70.
|
48 |
张锁兵, 赵梦云, 苏晓琳, 等 . 中高温低浓度合成聚合物压裂液性能研究[J]. 油田化学, 2014, 31(3): 343-347.
|
|
ZHANG Suobing , ZHAO Mengyun , SU Xiaolin , et al . Performance study of low concentration synthetic polymer fracturing fluid for middle-high temperature reservoir[J]. Oilfield Chemistry, 2014, 31(3): 343-347.
|