[1] |
PERRICONE A C, ENRIGHT D P, LUCAS J M. Vinyl sulfonate copolymers for high-temperature filtration control of water-based muds[J]. SPE Drilling Engineering, 1986, 1(5):358-364.
|
[2] |
THAEMLITZ C J, PATEL A D, COFFIN G, et al. New environmentally safe high-temperature water-based drilling-fluid system[J]. SPE Drilling & Completion, 1999, 14(3):185-189.
|
[3] |
HEINZ HEIER K, LAMBERT B. Synthetic polymer extends fluid loss control to HP/HT environments[J]. World Oil, 2005, 226(7):75-76.
|
[4] |
JARRETT M, CLAPPER D. High temperature filtration control using water based drilling fluid systems comprising water soluble polymers:U.S. Patent 7, 651, 980[P]. 2010-1-26.
|
[5] |
HUANG Weian, ZHAO Cong, QIU Zhengsong, et al. Synthesis, characterization and evaluation of a quadripolymer with low molecular weight as a water based drilling fluid viscosity reducer at high temperature (245℃)[J]. Polymer International, 2015, 64(10):1352-1360.
|
[6] |
黄维安, 邱正松, 徐加放, 等. 超高温抗盐聚合物降滤失剂的研制及应用[J]. 中国石油大学学报(自然科学版), 2011, 35(1):155-158. HUANG Weian, QIU Zhengsong, XU Jiafang, et al. Development and application of ultra-high temperature anti-salt polymer fluid loss reducer[J]. Journal of China University of Petroleum, 2011, 35(1):155-158.
|
[7] |
黄维安, 邱正松, 曹杰, 等. 钻井液用超高温抗盐聚合物降滤失剂的研制与评价[J]. 油田化学, 2012,29(2):133-137.HUANG Weian, QIU Zhengsong, CAO Jie, et al. Development and evaluation of anti ultra-high temperature and salt tolerant polymeric filtrate loss reducer[J]. Oilfield Chemistry, 2012, 29(2):133-137.
|
[8] |
黄维安, 邱正松, 乔军, 等. 抗温抗盐聚合物降滤失剂的研制及其作用机制[J]. 西南石油大学学报, 2013, 35(1):129-134.HUANG Weian, QIU Zhengsong, QIAO Jun, et al. Development of anti high temperature and salt polymer fluid loss agent and study on its operation mechanisms[J]. Journal of Southwest Petroleum University(Science & Technology Edition), 2013(1):129-134.
|
[9] |
MA Xiping, ZHU Zhongxiang, HOU Daiyong, et al. Synthesis and performance evaluation of a water-soluble copolymer as high-performance fluid loss additive for water-based drilling fluid at high temperature[J]. Russian Journal of Applied Chemistry, 2016, 89(10):1694-1705.
|
[10] |
XUE Yuzhi, LI Gongrang, LIU Baofeng, et al. Application of super high density drilling fluid under ultrahigh temperature on well Shengke-1[C]//International Oil and Gas Conference and Exhibition in China. Society of Petroleum Engineers, 2010.
|
[11] |
王中华. AMPS/AM/AN三元共聚物降滤失剂的合成与性能. 油田化学, 1995, 12(4):367-369.WANG Zhonghua. Synthesis and propperties of aMPS/AM/AN terpolymer as filtrate loss controller for drilling fluids[J]. Oilfield Chemistry, 1995, 12(4):367-369.
|
[12] |
王中华, 王旭,杨小华. 超高温钻井液体系研究(IV)-盐水钻井液设计与评价[J]. 石油钻探技术, 2009, 37(6):1-5.WANG Zhonghua, WANG Xu, YANG Xiaohua. A study on ultra high temperature drilling fluid system (IV):brine drilling fluid design and evaluation[J]. Petroleum Drilling Techniques, 2009, 37(6):1-6.
|
[13] |
孙金声, 杨泽星. 超高温(240℃)水基钻井液体系研究[J]. 钻井液与完井液, 2006, 23(1):15-18.SUN Jinsheng, YANG Zexing. Study on the water based drilling fluid with ultra-high temperature tolerance[J]. Drilling Fluid & Completion Fluid, 2006, 23(1):15-18.
|
[14] |
杨泽星, 孙金声. 高温(220℃)高密度(2.3 g/cm3)水基钻井液技术研究[J]. 钻井液与完井液, 2007, 24(5):15-18.YANG Zexing, SUN Jinsheng. Study on water-based drilling fluid technology with high temperature(220℃) and high density(2.3 g/cm3)[J]. Drilling Fluid & Completion Fluid, 2007, 24(5):15-18.
|