|
|
|
| SIMILAR EXPERIMENTAL STUDY OF CAVITY BUILDING USING LARGE-SIZE MOLDED SALT ROCK |
| JIANG Deyi1,QIU Huafu1,YI Liang1,REN Song1,CHEN Jie1,YANG Chunhe1,2 |
| (1. State Key Laboratory of Coal Mine Disaster Dynamics and Control,Chongqing University,Chongqing 400044,China;2. State Key Laboratory of Geomechanics and Geotechnical Engineering,Institute of Rock and Soil Mechanics,Chinese Academy of Sciences,Wuhan,Hubei 430071,China) |
|
|
|
|
Abstract Based on the dimensional analysis method of similarity theory,the similar experimental model was established to simulate the cavity building using the molded salt rock instead of natural salt. By experiments,a kind of molded salt rock that can be used for cavity building was found. Using the self-developed mould,a kind of large-size molded salt rock was obtained,which has a diameter of 300 mm and a maximum height of 500 mm. Three groups of experiments with different kinds of solution mining techniques were conducted,and a method for measuring the cavity shape by saturated brine for its electrical properties was proposed. The study shows that the cavity shape and the cavity building efficiency are affected by the washing techniques,and main factors include the location of casing pipes,location of oil cushion,time of cavity building and water flow. The step-by-step expansion method for cavity building can induce higher cavity building efficiency,and the cavity is an inverted pear-shaped chamber with a volume of 4 200 cm3,the maximum diameter of 24 cm,the average diameter of 20 cm,and the height of 27 cm. The brine concentration is about 22%,which reaches the demand of salt mining. Based on the similarity criteria in the similar experimental model,relationship between model and prototype parameters was developed. It provides a guidance about the design and control of cavity building.
|
|
Received: 27 April 2012
|
|
|
|
| [1] KAZEMI H,JESSEN F W. Mechanism of flow and controlled dissolution of salt in solution mining[J]. SPE Journal,1964,4(4):317–328.
[2] JESSEN F W. Salt dissolution under turbulent flow conditions[R]. [S.l.]:Solution mining Research Institute,1980.
[3] ROHR H U. Rates of dissolution of salt minerals during leaching caverns in salt—fundamentals and Practical application[C]// Proceedings of the 5th International Symposium on Salt. [S.l.]:Northern Ohio Geological Society,1980:125–136.
[4] PARK B Y,EHGARTNER B L. Sensitivity of storage field performance to geologic and cavern design parameters in salt domes[R]. Albuquerque:Sandia National Laboratories,2010.
[5] FUENKAJORN K,ARCHEEPLOHA S. Prediction of cavern configu- rations from subsidence data[J]. Engineering Geology,2010,110(1/2):21–29.
[6] REMSON D R,DOMMERS O B,JESSEN F W. Techniques for developing predetermined shaped cavities in solution mining[C]// RAU J L ed. Proceedings of the 2nd Symposium on Salt. [S.l.]:[s.n.],1965:297–310.
[7] SEARS G F,JESSEN F W. Controlled solution mining in massive salt[J]. SPE Journal,1966,6(2):115–125.
[8] 姜德义,陈 结,刘建平,等. 应力损伤盐岩的声波、溶解试验研究[J]. 岩土力学,2009,30(12):3 569–3 573.(JIANG Deyi,CHEN Jie,LIU Jianping,et al. Experimental research on acoustic and dissolved properties of stress damaged salt rock[J]. Rock and Soil Mechanics,2009,30(12):3 569–3 573.(in Chinese))
[9] 刘成伦,徐龙君,鲜学福. 长山岩盐动溶的动力学特征[J]. 重庆大学学报:自然科学版,2000,23(4):58–59.(LIU Chenglun,XU Longjun,XIAN Xuefu. Kinetics characteristics of resolving of rock salt of Changshan in dynamic state[J]. Journal of Chongqing University:Natural Science,2000,23(4):58–59.(in Chinese))
[10] 吴乘胜,杨骏六. 单井对流法水溶采矿的数学模型[J]. 力学与实践,2003,25(1):11–13.(WU Chengsheng,YANG Junliu. Mathematical model of solution mining with single well convection method[J]. Mechanics and Engineering,2003,25(1):11–13.(in Chinese))
[11] 赵志成,朱维耀,单文文,等. 盐岩储气库水溶建腔数学模型研究[J]. 天然气工业,2004,24(9):126–129.(ZHAO Zhicheng,ZHU Weiyao,SHAN Wenwen,et al. Mathematical model of chamber building with water solution for gas storages in salt beds[J]. Natural Gas Industry,2004,24(9):126–129.(in Chinese))
[12] 万玉金. 在盐层中建设储气库的形状控制机制[J]. 天然气工业,2004,24(9):130–132.(WAN Yujin. Shape-controlling mechanism of gas storage building in salt beds[J]. Natural Gas Industry,2004,24(9):130–132.(in Chinese))
[13] 殷国富,刘 东,申新卫. 基于模糊神经网络的岩盐卤水浓度的控制方法研究[J]. 自动化学报,2000,26(4):519–522.(YIN Guofu,LIU Dong,SHEN Xinwei. Research on control method of bittern density based on fuzzy neural network in salt solution mining[J]. Acta Automatica Sinica,2000,26(4):519–522.(in Chinese))
[14] 刘成伦. 钻井开采薄层岩盐水溶物化特征及溶腔形态的研究[博士学位论文][D]. 重庆:重庆大学,2000.(LIU Chenglun. Study on the physico-chemical characteristics and cavity form of drilling water dissolving for thin-layer salt rock[Ph. D. Thesis][D]. Chongqing:Chongqing University,2000.(in Chinese))
[15] 郤保平,赵阳升,赵延林,等. 层状盐岩储库长期运行腔体围岩流变破坏及渗透现象研究[J]. 岩土力学,2008,29(增):241–246. (XI Baoping,ZHAO Yangsheng,ZHAO Yanlin,et al. Investigation on rheodestruction and permeability of surrounding rock for long- term running storage cavern in bedded rock salt[J]. Rock and Soil Mechanics,2008,29(Supp.):241–246.(in Chinese))
[16] 陈剑文,杨春和,郭印同. 基于盐岩压缩–扩容边界理论的盐岩储气库密闭性分析研究[J]. 岩石力学与工程学报,2009,28(增2):3 302–3 308.(CHEN Jianwen,YANG Chunhe,GUO Yintong. Study of sealability of cavern for natural gas storage in deep salt formation based on compaction-dilatancy boundary of salt[J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(Supp.2):3 302– 3 308.(in Chinese))
[17] 陈卫忠,谭贤君,伍国军,等. 含夹层盐岩储气库气体渗透规律研究[J]. 岩石力学与工程学报,2009,28(7):1 297–1 304.(CHEN Weizhong,TAN Xianjun,WU Guojun,et al. Research on gas seepage law in laminated salt rock gas storage[J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(7):1 297–1 304.(in Chinese))
[18] 任 松,姜德义,杨春和. 盐穴储气库破坏后地表沉陷规律数值模拟研究[J]. 岩土力学,2009,30(12):3 595–3 601.(REN Song,JIANG Deyi,YANG Chunhe. Numerical simulation research on ground subsidence after salt cavern gas storage collapsing[J]. Rock and Soil Mechanics,2009,30(12):3 595–3 601.(in Chinese))
[19] 杨 强,刘耀儒,冷旷代,等. 能源储备地下库群稳定性与连锁破坏分析[J]. 岩土力学,2009,30(12):3 553–3 561.(YANG Qiang,LIU Yaoru,LENG Kuangdai,et al. Stability and chain destruction analysis of underground energy storage cluster based on deformation reinforcement theory[J]. Rock and Soil Mechanics,2009,30(12): 3 553–3 561.(in Chinese))
[20] 陈 锋,杨海军,杨春和. 盐岩储气库注气排卤期剩余可排卤水分析[J]. 岩土力学,2009,30(12):3 602–3 606.(CHEN Feng,YANG Haijun,YANG Chunhe. Analysis of residual brine of salt rock gas storage during injecting gas to eject brine[J]. Rock and Soil Mechanics,2009,30(12):3 602–3 606.(in Chinese))
[21] 赵晓华,孙艳秋,吴诗中. 深井水溶开采天然碱矿室内模拟试验[J]. 江西地质,1999,13(3):228–231.(ZHAO Xiaohua,SUN Yanqiu,WU Shizhong. Laboratory simulation experiment of trona mining by deep well water dissolving method[J]. Jiangxi Geology,1999,13(3):228–231.(in Chinese))
[22] 杨俊杰. 相似理论与结构模型试验[M]. 武汉:武汉理工大学出版社,2005:15–20.(YANG Junjie. Similarity theory and structure model test[M]. Wuhan:Wuhan University of Technology Press,2005:15–20.(in Chinese)) |
|
|
|