[1] 张梦婷,张勇. 国外井下安全阀的技术现状[J]. 石油机械,2008,36(7):81-84. doi:10.16082/j.cnki.issn.10014578.2008.07.019 ZHANG Mengting, ZHANG Yong. Technical status of subsurface safety valves at abroad[J]. Journal of Petroleum Machinery, 2008, 36(7):81-84. doi:10.16082/j.cnki.issn.1001-4578.2008.07.019 [2] 周大伟,钟功祥,梁政. 国内外井下安全阀的技术现状及发展趋势[J]. 石油矿场机械, 2007, 36(3):14-16. doi:10.3969/j.issn.1001-3482.2007.03.005 ZHOU Dawei, ZHONG Gongxiang, LIANG Zheng. Study of technical state and development tendency for downhole safety valve of domestic and foreign[J]. Oil Field Equipment, 2007, 36(3):14-16. doi:10.3969/j.issn.10013482.2007.03.005 [3] API阀门和井口设备标准分委员会. API Spec 14A 2000井下安全阀规范[S]. 10版. 北京:兵器工业出版社, 2000. [4] GARNER J, Martin K."有备无患:井下安全阀". 油田新技术[J/OL]. (2002-10-15)[2016-7-25]. http://www.cn.slb.com/uploads/journal/Winter202002/p52_64.pdf. [5] Al-YATEEM K S, HANBZAZAH S M, ALSYED S M, et al. First successful rigless conversion of subsurface safety valves from tubing retrievable to wireline retrievable in Middle East[C]. SPE 159202-MS 2012. doi:10.2118/159202-MS [6] SCHLUMBERGER. Tubing-retrievable safety & injec tion valves[EB/OL].[2016-06-15]. http://www.slb.com/services/completions/safety_valves/tubing_retrievable_valves.aspx. [7] HALIBURTON. Subsurface safety equipment[EB/OL].[2016-06-30]. http://www.halliburton.com/public/cps/contents/Books_and_Catalogs/web/CPSCatalog/09_Subsurface_Safety_Equip. pdf. [8] BAKER Hughes. Subsurface safety systems[EB/OL].[2016-07-08]. https://www.bakerhughes.com/products-and-services/completions/well-completions/subsurfacesafety-systems. [9] WEATHERFORD. Optimax series safety valves[EB/OL].[2016-07-15]. http://www.weatherford.com/en/productsservices/completion-and-stimulation/upper-completions/safety-systems. [10] 川南航天能源科技有限公司. SV系列井下安全阀[EB/OL].[2016-07-19]. http://cetcoil.com/ProductList.asp?ClassID=64#here. [11] 浙江惟其信石油机械有限公司. 井下安全控制系统[EB/OL].[2016-07-19]. http//www.weiqixin.com/item?kind=03. [12] 南京拓鸿液压科技有限公司. 美国PERKER派克OE型双作用活塞组合密封[EB/OL]. (2015-05-21)[2016-07-22]. http://www.goepe.com/apollo/prodetail-njtuohong-8790789.html. [13] TAYLOR D M. Packer & safety valve development for ultra high pressure high temperature test & production wells[C]. OTC 23627-MS, 2012. doi:10.4043/23627-MS [14] IMBO P, GANDINI G. Electro magnetic wireline retrievable-surface controlled subsurface safety valve:A new backup for surface controlled subsurface safety valve to avoid workover[C]. Ravenna, Italy, Offshore Mediterranean Conference and Exhibition, 2011. [15] RAUSAND M, VATN J. Reliability modeling of surface controlled subsurface safety valves[J]. Reliability Engineering & System Safety, 1998, 61(1-2):159-166. doi:10.1016/S0951-8320(97)00066-5 [16] ROBISON C E. Mapping reliability of diacs to that of scssvs over three decades[C]. OTC 14254-MS, 2002. doi:10.4043/14254-MS [17] THAI D, ORZECHOWSKI D, PINARD G. Case study:Deepwater design verification and validation testing for subsurface safety valves for HPHT environments[C]. OTC 28983-MS, 2018. doi:10.4043/28983-MS [18] LEBOEUF G J, ADAMS S M, PITTMAN A, et al. New design in surface-controlled subsurface safety valves resolves valve problems in subsea completions in the Gulf of Mexico[C]. OTC 19620-MS, 2008. doi:10.4043/19620MS [19] AL-YATEEM K S, HANBZAZAH S M, ALSYED S M, et al. First successful rigless conversion of subsurface safety valves from tubing retrievable to wireline retrievable in Middle East[C]. SPE 159202-MS, 2012. doi:10.2118/159202-MS [20] CHARPENTIER T V J, BARAKA-LOKMANE S, NEVILLE A, et al. Comparison of characteristic of antiscaling coating for subsurface safety valve for use in oil and gas industry[C]. IPTC 17953-MS, 2014. doi:10.2523/IPTC-17953-MS [21] KUMAR D, WELCH J C, XU Z. Reduction in scale buildup from sub-surface safety valve using hydrophobic material coating[C]. SPE 166218-MS, 2013. doi:10.2118/166218-MS [22] EHTESHAM M A, TUCKER R, GILES J. Downhole safety valve for well-intervention operations:Design, testing, and successful case history[C]. SPE 142887-MS, 2011. doi:10.2118/142887-MS [23] WAGNER A N. Capillary based surface controlled subsurface safety valve systems solution for problematic wells[C]. SPE 183837-MS, 2017. doi:10.2118/183837MS [24] 周大伟. 井下安全阀系统设计与分析[D]. 成都:西南石油大学, 2007. ZHOU Dawei. Design and analysis of subsurface safety valves' system[D]. Chengdu:Southwest Petroleum University, 2007. [25] 牛贵锋, 杨万有. 高温高压井下安全阀阀板优化研究[J]. 石油矿场机械, 2017, 46(2):11-16. doi:10.3969/j.issn.1001-3482.2017.02.003 NIU Guifeng, YANG Wanyou. Optimization of valve plate of high temperature and high pressure downhole safety valve[J]. Oil Field Equipment, 2017, 46(2):11-16. doi:10.3969/j.issn.1001-3482.2017.02.003 [26] 李英松,董社霞,付强,等. 井下安全阀启闭阀板流场及应力场有限元分析[J]. 钻采工艺, 2017, 40(1):61-64. doi:10.3969/j.issn.1006-768x.2017.01.17 LI Yingsong, DONG Shexia, FU Qiang, et al. Finite element analysis on flow field and stress field of sssv flapper open/closE[J]. Drilling & Production Technology, 2017, 40(1):61-64. doi:10.3969/j.issn.1006-768x.2017.01.17 [27] 黎伟,宋伟,李乃禾,等. 滑套式井下安全阀设计及动态特性分析[J]. 中国安全生产科学技术, 2017, 13(2):159-163. doi:10.11731/j.issn.1673-193x.2017.02.028 LI Wei, SONG Wei, LI Naihe, et al. Design and dynamic characteristic analysis of sliding-sleeve subsurface safety valve[J]. Journal of Safety Science and Technology, 2017, 13(2):159-163. doi:10.11731/j.issn.1673193x.2017.02.028 [28] 李美求,阳康,周思柱,等. 自平衡井下安全阀动态平衡响应分析[J]. 液压与气动, 2017(6):70-74. doi:10.11832/j.issn.1000-4858.2017.06.014 LI Meiqiu, YANG Kang, ZHOU Sizhu, et al. Dynamic equilibrium response analysis for self-balancing subsurface safety valve[J]. Chinese Hydraulics & Pneumatics, 2017(6):70-74. doi:10.11832/j.issn.10004858.2017.06.014 [29] 李常友,孙宝全,董社霞,等. SC35-129A型井下安全阀的研制[J]. 石油机械, 2005, 33(1):43-44. doi:10.16082/j.cnki.issn.1001-4578.2005.01.014 LI Changyou, SUN Baoquan, DONG Shexia, et al. Development of model SC35-120A downhole safety valve[J]. Journal of Petroleum Machinery, 2005, 33(1):43-44. doi:10.16082/j.cnki.issn.1001-4578.2005.01.014 [30] 潘世杰. 中海油成功研发出世界级耐高温井下安全阀[DB/OL].[2016-07-25]. http://www.chinadevelopment.com.cn/cy/2015/05/908737.shtml. [31] 孔学云, 李宝龙, 齐海涛, 等. 88.9 mm油管携带式井下安全阀研制[J]. 石油矿场机械, 2016, 45(9):49-52. doi:10.3969/j.issn.1001-3482.2016.09.011 KONG Xueyun, LI Baolong, QI Haitao, et al. Research and development of 3-12 in. tubing-retrievable subsurface safety valve[J]. Oil Field Equipment, 2016, 45(9):49-52. doi:10.3969/j.issn.1001-3482.2016.09.011 [32] 吴迪. 井下安全阀液体综合试验系统的研究[D]. 长春:长春理工大学, 2011. WU Di. Research on subsurface safety valve liquid test system[D]. Changchun:Changchun University of Science and Technology, 2011. [33] 王战友. 井下安全阀气体综合试验检测系统研究[D]. 长春:长春理工大学, 2014. WANG Zhanyou. Research on subsurface safety valve gas test system[D]. Changchun:Changchun University of Science and Technology, 2014. [34] SHANG Chenmin, ZHANG Dongmei, ZHANG Xinming. Subsurface safety valve automation test systems design[J]. Applied Mechanics & Materials, 2014, 543-547:1188-1191. doi:10.4028/www.scientific.net/AMM.543547.1188 [35] 李政. 井下安全阀测试系统设计与实现[D]. 上海:上海大学, 2016. LI Zheng. Design of test system for subsurface safety valve[D]. Shanghai:Shanghai University, 2016. [36] 张福涛. 海上油井井下安全阀检测系统设计[J]. 内蒙古石油化工,2012(24):79-80. doi:10.3969/j.issn.10067981.2012.24.036 ZHANG Futao. Testing system design of offshore well subsurface safety valves[J]. Inner Mongolia Petrochemical Industry, 2012(24):79-80. doi:10.3969/j.issn.10067981.2012.24.036 [37] 肖忠哲. 气井安全控制技术[D]. 大庆:东北石油大学, 2014. XIAO Zhongzhe. Gas well safety control technology[D]. Daqing:Northeast Petroleum University, 2014. [38] 廖谟圣,杨本灵. 世界石油设备发展的新特点及机遇与挑战[J]. 石油矿场机械, 2007, 36(9):1-6. doi:10.3969/j.issn.1001-3482.2007.09.001 LIAO Mosheng, YANG Benling. The opportunity and challenge to new trend in current world petroleum[J]. Oil Field Equipment, 2007, 36(9):1-6. doi:10.3969/j.issn.1001-3482.2007.09.001 [39] 王兰. 我国石油装备产业发展现状与存在问题分析[J]. 价值工程, 2013(21):146-147. doi:10.3969/j.issn.1006-4311.2013.21.081 WANG Lan. Development status and problems of China's petroleum equipment industry[J]. Value Engineering, 2013(21):146-147. doi:10.3969/j.issn.1006-4311.2013.21.081 [40] 吴强,刘冰. 石油装备制造业发展现状及其机遇和挑战[J]. 石油知识, 2009(5):34-34. WU Qiang, LIU Bing. Petroleum equipment manufacturing industry development status and the opportunities and challenges[J]. Petroleum Knowledge, 2009(5):34-34. [41] 刘清友,唐洋. 水下测试树国内外研究现状与国产化思考[J]. 西南石油大学学报(自然科学版), 2013, 35(2):1-7. doi:10.3863/j.issn.1674-5086.2013.02.001 LIU Qingyou, TANG Yang. Reflections on research status of subsea test tree and home-made feasibilities[J]. Journal of Southwest Petroleum University (Science & Technology Edition), 2013, 35(2):1-7. doi:10.3863/j.issn.16745086.2013.02.001 [42] 耿志学. 金属对金属密封技术及其在管接头上的应用[J]. 液压气动与密封, 2012, 32(8):29-30. doi:10.3969/j.issn.1008-0813.2012.08.011. GENG Zhixue. Metal to metal sealing technique with application to pipe connector[J]. Hydraulics Pneumatics & Seals, 2012, 32(8):29-30. doi:10.3969/j.issn.1008-0813.2012.08.011. |