Citation: | shi Xi-lin, li Yin-ping, yang Chun-he, qu Dan-an, yang Hai-jun, MA H ong-ling. Collapse control technology for interbeds in solution mining for oil/gas storage in multi-interbedded salt formation[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(12): 1957-1963. |
[1] |
杨春和 , 李银平 , 陈 锋 . 层状盐岩力学理论与工程 [M]. 北京 : 科学出版社 , 2009. (YANG Chun-he, LI Yin-ping, CHEN Feng. Mechanics theory and engineering of bedded salt rock[M]. Beijing: Science Press, 2009. (in Chinese))
|
[2] |
王清明 . 盐类矿床水溶开采 [M]. 北京 : 化学工业出版社 , 2003. (WANG Qing-ming. Solution mining in salt deposits[M]. Beijing: Chemical Industry Press, 2003. (in Chinese))
|
[3] |
中国科学院武汉科技查新咨询检索中心 . 盐岩储气库水溶造腔夹层垮塌机理及控制技术研究科技查新报告 [R]. 武汉 : 中国科学院国家科学图书馆武汉分馆 , 2009. (Wuhan Documentation and Information Center of Chinese Academy of Sciences. Novelty assessment report of mechanism and controlling technology of interbeds collapse in solution mining for gas storage[R]. Wuhan: Wuhan Branch of National Science Library, CAS. 2009. (in Chinese))
|
[4] |
YVAN CHARNAVEL, NICOLAS LUBIN. Insoluble deposit in salt cavern--test case[C]// SMRI Fall 2002 Meeting, Austria, 2002 .
|
[5] |
STEPHEN BAUER, BRIAN EHGARTNER, BRUCE LEVIN, et al. Waste disposal in horizontal solution mined caverns[C]// SMRI Fall Meeting, 1998 .
|
[6] |
KERRY L Devries, KIRBY D Mellegard, GARY D Callahan, et al. Cavern roof stability for natural gas storage in bedded salt[R]. Rapid City, South Dakota: RESPEC, 2005 .
|
[7] |
姜德义 , 任 松 , 刘新荣 , 等 . 岩盐溶腔顶板稳定性突变理论分析 [J]. 岩土力学 , 2005, 26 (7): 1099 – 1103. (JIANG De-yi, REN Song, LIU Xin-rong, et al. Stability analysis of rock salt cavern with catastrophe theory [J]. Rock and Soil Mechanics, 2005, 26 (7): 1099 – 1103. (in Chinese))
|
[8] |
万玉金 . 在盐层中建设储气库的形状控制机理 [J]. 天然气工业 , 2004, 24 (9): 130 – 132. (WAN Yu-jin. The mechanism of controlling the shape of gas storeroom built in the rock salt[J]. Natural Gas Industry, 2004, 24 (9): 130 – 132. (in Chinese))
|
[9] |
蒋向阳 . 顶板垮塌在水溶采矿中的应用 [J]. 化工矿物与加工 , 1994, 23 (4): 10 – 12. (JIANG Xiang-yang. Application of roof caving in solution mining [J]. Industrial Minerals and Porocessing, 1994, 23 (4): 10 – 12. (in Chinese))
|
[10] |
施锡林 , 李银平 , 杨春和 , 等 . 卤水浸泡对泥质夹层抗拉强度影响的试验研究 [J]. 岩石力学与工程学报 , 2009, 28 (11): 2301 – 2308. (SHI Xi-lin, LI Yin-ping, YANG Chun-he. et al. Test study of influence of brine on tensile strength of muddy intercalation[J]. Chinese Journal of Rock Mechanics and Engineering, 2009, 28 (11): 2301 – 2308. (in Chinese))
|
[11] |
施锡林 , 李银平 , 杨春和 , 等 . 盐穴储气库水溶造腔夹层垮塌力学机制研究 [J]. 岩土力学 , 2009, 30 (12): 3615 – 3620. (SHI Xi-lin, LI Yin-ping, YANG Chun-he, et al. r esearch on mechanical mechanism of interlayer collapse in solution mining for salt cavern gas storage[J]. Rock and Soil Mechanics, 2009, 30 (12): 3615 – 3620. (in Chinese))
|
[12] |
魏东吼 . 金坛盐穴地下储气库造腔工程技术研究 [D]. 东营 : 中国石油大学 , 2008. (WEI Dong-hou. Engineering technology of cavity making in Jintan saltcaverns underground gas storage[D]. Dongying: China University of Petroleum, 2008. (in Chinese))
|
[13] |
屈丹安 , 杨春和 , 施锡林 , 等 . 一种油水界面检验和控制方法 : 中国 , 200810149877.1[P]. 2009. (QU Dan-an, YANG Chun-he, SHI Xi-lin, et al. A method of checking and controlling oil-water interface in solution mining: China, ZL200810149877.1[P]. 2009. (in Chinese))
|
[14] |
屈丹安 , 杨春和 , 施锡林 , 等 . 一种油水分离检验装置 : 中国 , ZL200810149878.6[P]. 2009. (QU Dan-an, YANG Chun-he, SHI Xi-lin, et al. A device for checking oil-water separation in solution mining: China, ZL200810149878.6[P]. 2009. (in Chinese))
|
[15] |
刘艳辉 , 李 晓 , 李守定 , 等 . 盐岩地下储气库泥岩夹层分布与组构特性研究 [J]. 岩土力学 , 2009, 30 (12): 3627 – 3632. (LIU Yan-hui, LI Xiao, LI Shou-ding , et al. Distribution and structural fabric features of mudstone interlayer of rock salt in underground gas storage[J]. Rock and Soil Mechanics, 2009, 30 (12): 3627 – 3632 . (in Chinese))
|
[1] | WANG Tao, FAN Hong, WANG Kangren, ZHOU Guoqing, WANG Liangliang. A unified constitutive model for dual-yield surface for warm frozen soil and its verification[J]. Chinese Journal of Geotechnical Engineering, 2025, 47(1): 135-143. DOI: 10.11779/CJGE20231031 |
[2] | GUO Yu, CHI Shi-chun, MI Xiao-fei. Experimental study on particle strength and elastic mechanical parameters of coarse-grained soil[J]. Chinese Journal of Geotechnical Engineering, 2021, 43(9): 1675-1681. DOI: 10.11779/CJGE202109012 |
[3] | AN Liang, DENG Jin, GUO Peng, ZHANG Yang-peng, ZHENG Fang. Correlation between microscopic parameters and dynamic elastic modulus of loess[J]. Chinese Journal of Geotechnical Engineering, 2019, 41(S2): 105-108. DOI: 10.11779/CJGE2019S2027 |
[4] | LIU Meng-xin, YAO Xiao-liang, QI Ji-lin, MA Ling. 1D creep model for frozen soil taking account of stress history[J]. Chinese Journal of Geotechnical Engineering, 2016, 38(5): 898-903. DOI: 10.11779/CJGE201605015 |
[5] | LUO Fei, ZHAO Shu-ping, MA Wei, JIAO Gui-de, KONG Xiang-bing. Experimental study on dynamic elastic modulus of frozen soils under stepped axial cyclic loading[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(5): 849-855. |
[6] | MA Wei, WANG Da-yan. Status quo and reflections of the deep frozen soil mechanics[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(6): 1123-1130. |
[7] | MA Wei, WANG Da-yan. Studies on frozen soil mechanics in China in past 50 years and their prospect[J]. Chinese Journal of Geotechnical Engineering, 2012, 34(4): 625-640. |
[8] | LING Xianzhang, XU Xueyan, XU Chunhua, LI Xiaozhi. Study on frozen Harbin silty clay through its measuring tests of ultrasonic velocity[J]. Chinese Journal of Geotechnical Engineering, 2002, 24(4): 456-459. |
[9] | Li Hongsheng, Liu Zengli, Zhu Yuanlin, Peng Wanwei. Theory and methods on tests of the fracture toughness KⅠc of frozen soil[J]. Chinese Journal of Geotechnical Engineering, 2000, 22(1): 64-68. |
[10] | Xu Xueyan, Zhong Congli, Chen Yaming, Zhang Jiayi. Research on dynamic characters of frozen soil and determination of its parameters[J]. Chinese Journal of Geotechnical Engineering, 1998, 20(5): 80-84. |