购买
下载掌阅APP,畅读海量书库
立即打开
畅读海量书库
扫码下载掌阅APP

1.4 小结

本章通过内容调研,对深地储能领域重大国际计划、主要国家项目及领域相关动态和研究前沿进行了梳理归纳。基于SCI论文成果的科学计量分析,对深地储能领域研究态势进行了定量揭示。通过调研和分析,得出以下主要结论:

(1)随着各国碳中和目标的提出,新能源将是未来电力供应的主体。地下储能作为一种大规模能源存储技术具有广阔的应用前景,是支撑我国大规模发展新能源、保障能源安全的关键技术,可以充分利用地下闲置空间,实现多种形式能源资源的大规模高效存储,对于优化能源结构、促进清洁能源生产、保障国家能源安全意义重大,是实现国家可持续发展和绿色发展战略的重要选择。

(2)当前深地储能领域科学研究正处于快速发展阶段,一系列重大计划和战略的部署推进了该领域的快速发展,为深地储能的深入研究提供了机遇。世界主要发达国家在深地储能领域开展了大量的研究,实施了一系列示范与商业项目,并且实施了一系列项目资助计划与政策。我国“碳达峰、碳中和”目标的提出和“深海、深地、深空”战略的实施,为实现地下储能领域突破性发展提供了重要发展机遇。

(3)地下天然气存储、地下储氢、压缩空气储能、盐岩与盐穴、数值模拟分析等与地下储能相关的研究方向一直是近几年关注的热点。地下储能主要储层包括盐穴、含水层和枯竭油气藏等,盐穴地下储能是当前的研究前沿方向。其中,盐穴储氢进入蓬勃发展期,盐穴中的压缩空气储能迎来重要发展机遇期,盐穴储气研究如火如荼,盐穴电池储能系统的研究迫在眉睫 [145] 。我国盐穴利用方面的研究起步较晚,与欧美等国家和地区相比,盐穴地下储库的建设数量和技术水平仍有较大差距 [146]

(4)深地储能领域的研究主要有“盐岩物理力学性质研究”相关主题、“地下储库建造”相关主题、“储层适用性研究”相关主题、“储能成本、适用性研究”相关主题等。其中,“盐岩物理力学性质研究”相关主题主要集中于盐岩的渗透率、蠕变、失稳和稳定性分析等,是最近较为活跃的研究主题。层状盐岩、盐岩物理力学性质、数值模拟分析及气体地下存储的研究是领域内的研究热点问题。

(5)当前深地储能领域的研究成果产出主要集中于中国和美国。中国在该领域的研究成果数量居世界第1位,论文产出已经具有较好的影响力,其中,中国科学院是该领域发文数量最多的中国机构,具有较大的影响力。

致谢 :中国科学院武汉岩土力学研究所杨春和院士、王同涛研究员,中国科学院文献情报中心吴鸣研究馆员对本章内容提出了宝贵意见和建议,谨致谢忱。

执笔人 :中国科学院武汉文献情报中心李娜娜、赵晏强。


[1] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[2] 陈海生,李泓,马文涛,等.2021年中国储能技术研究进展[J].储能科学与技术,2022,11(3):1052-1076.

[3] 肖立业,张京业,聂子攀,等.地下储能工程[J].电工电能新技术,2022,41(2):1-9.

[4] 谢和平,高峰,鞠杨,等.深地科学领域的若干颠覆性技术构想和研究方向[J].工程科学与技术,2017,49(1):1-8.

[5] BUDT M,WOLF D,SPARN R,et al.A Review on Compressed Air Energy Storage:Basic Principles,Past Milestones and Recent Developments[J].Applied Energy,2016(170):250-268.

[6] 央视网.我国首个盐穴压缩空气储能电站并网投产[EB/OL].(2022-05-26)[2022-07-18].http://news.cctv.com/2022/05/26/ARTIuIJUo31SuQ4N4okkU7XU220526.shtml.

[7] BARNES F S,LEVINE J G.Large Energy Storage Systems Handbook[M].USA:CRC Press,2011:1-236.

[8] OLABI A B,WIBERFORCE T,RAMADAN M,et al.Compressed Air Energy Storage Systems:Components and Operating Parameters-A Review[J].Journal of Energy Storage,2021,334:102000.

[9] 马新华,郑得文,魏国齐,等.中国天然气地下储气库重大科学理论技术发展方向[J].天然气工业,2022,42(5):93-99.

[10] 郑雅丽,邱小松,赖欣,等.盐穴储气库地质体完整性管理体系[J].油气储运,2022,41(9):1021-1028.

[11] 陆争光.中国地下储气库主要进展、存在问题及对策建议[J].中外能源,2016,21(6):15-19.

[12] 中国石油天然气集团公司.中国石油储气调峰规划研究[R].北京:中国石油天然气集团公司,2015.

[13] 石油商报.中国石油储气库建设发展纪实[EB/OL].(2018-01-15)[2022-07-18].http://center.cnpc.com.cn/sysb/system/2018/01/12/001674978.shtml.

[14] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[15] 李国兴.地下储气库的建设与发展趋势[J].油气储运,2006(8):4-6,12.

[16] 1英尺等于0.3048m。

[17] FLORIAN T,UEBERER W,NEDERLOF E.Increasing the Capacity of an Underground Gas Storage by Optimized Well Completions,Matzen Field,Austria[R].The Netherlands,EUROPEC/EAGE Conference and Exhibition,2009.

[18] BAI M X,SHEN A Q,MENG L D,et al.Well Completion Issues for Underground Gas Storage in Oil and Gas Reservoirs in China[J].Journal of Petroleum Science and Engineering,2018,171:584-591.

[19] 贾英姿,袁璇,李明慧.氢能全产业链支持政策:欧盟的实践与启示[J].财政科学,2022,(1):141-151.

[20] 柏明星,宋考平,徐宝成,等.氢气地下存储的可行性、局限性及发展前景[J].地质论评,2014:60(4):748-754.

[21] IORDACHE M,PAMUCAR D,DEVECI M,et al.Prioritizing the Alternatives of the Natural Gas Grid Conversion to Hydrogen Using a Hybrid Interval Rough Based Dombi MARCOS Model[J].International Journal of Hydrogen Energy,2022,19:47.

[22] TARKOWSKI R.Perspectives of Using the Geological Subsurface for Hydrogen Storage in Polandl[J].International Journal of Hydrogen Energy,2017,42(1):347-355.

[23] WIELICZKO M,STETSON N.Hydrogen Technologies for Energy Storage:A Perspective[J].MRS Energy&Sustainability,2020,7:43.

[24] 柏明星,宋考平,徐宝成,等.氢气地下存储的可行性、局限性及发展前景[J].地质论评,2014,60(4):748-754.

[25] TARKOWSKI R.Underground Hydrogen Storage:Characteristics and Prospects[J].Renewable and Sustainable Energy Reviews,2019,105:86-94.

[26] ZIVAR D,KUAMR S,FOROOZES H J.Underground Hydrogen Storage:A Comprehensive Review[J].International Journal of Hydrogen Energy,2021,46(45):23436-23462.

[27] DUIGOU A L,BADER A G,LANOIX J C,et al.Relevance and Costs of Large Scale Underground Hydrogen Storage in France[J].International Journal of Hydrogen Energy,2017,42(36):22987-23003.

[28] LEWANDOWSKA-SMIERZCHALSKA J,TARKOWSKI R,ULIASZ-MISIAK B.Screening and Ranking Framework for Underground Hydrogen Storage Site Selection in Poland[J].International Journal of Hydrogen Energy,2018,43(9):4401-4414.

[29] TARKOWSKI R.Underground Hydrogen Storage:Characteristics and Prospects[J].Renewable and Sustainable Energy Reviews,2019,105:86-94.

[30] 付盼,罗淼,夏焱,等.氢气地下存储技术现状及难点研究[J].中国井矿盐,2020,51(6):19-23.

[31] 时洪斌,刘保国.水封式地下储油洞库人工水幕设计及渗流量分析[J].岩土工程学报,2010(1):130-137.

[32] 王梦恕,杨会军.地下水封岩洞油库设计、施工的基本原则[J].中国工程科学,2008(4):11-16,28.

[33] 杜国敏,耿晓梅,徐宝华.国外地下水封岩洞石油库的建设与发展[J].油气储运,2006(4):5-6.

[34] 张楠.层状盐岩储油库围岩力学和渗透特性及安全评价研究[D].重庆:重庆大学,2019.

[35] 中国能源报.国外盐穴地下石油储备概况[EB/OL].(2015-05-29)[2022-07-18].https://oil.in-en.com/html/oil 2344746.shtml.

[36] 李娜娜,赵晏强,王同涛,等.趋势观察:国际盐穴储能战略与科技发展态势分析[J].中国科学院院刊,2021,36(10):1248-1252.

[37] 杨春和,王同涛.深地储能研究进展[J].岩石力学与工程学报,2022,41(9):1729-1759.

[38] ANEKE M,WANG M H.Energy Storage Technologies and Real Life Applications-A State of the Art Review[J].Applied Energy,2016,179:350-377.

[39] REHMAN S,A l-HADHRAMI L M,ALAM M M.Pumped Hydro Energy Storage System:A Technological Review[J].Renewable and Sustainable Energy Reviews,2015,44:586-598.

[40] PICKARD W F.The History,Present State,and Future Prospects of Underground Pumped Hydro for Massive Energy Storage[J].Proceedings of the IEEE,2012,100(2):473-483.

[41] MENENDEZ J,ORDONEZ A,ALVAREZ R,et al.Energy from Closed Mines:Underground Energy Storage and Geothermal Applications[J].Renewable and Sustainable Energy Reviews,2019,108:498-512.

[42] UDDIN N,ASCE M.Preliminary Design of an Underground Reservoir for Pumped Storage[J].Geotechnical&Geological Engineering,2003,21(4):331-355.

[43] PICKARD W F.The History,Present State,and Future Prospects of Underground Pumped Hydro for Massive Energy Storage[J].Proceedings of the IEEE,2012,100(2):473-483.

[44] PUJADES E,ORBAN P,BODEUX S,et al.Underground Pumped Storage Hydropower Plants Using Open Pit Mines:How Do Groundwater Exchanges Influence the Efficiency?[J].Applied Energy,2017,190:135-146.

[45] MENENDEZ J,ORDONEZ A,ALVAREZ R,et al.Energy from Closed Mines:Underground Energy Storage and Geothermal Applications[J].Renewable and Sustainable Energy Reviews,2019,108:498-512.

[46] PUJADES E,WILLEMS T,BODEUX S,et al.Underground Pumped Storage Hydroelectricity Using Abandoned Works (Deep Mines or Open Pits) and the Impact on Groundwater Flow[J].Hydrogeology Journal,2015,24(6):1-16.

[47] WINDE F,KAISER F,ERASMUS E.Exploring the Use of Deep Level Gold Mines in South Africa for Underground Pumped Hydroelectric Energy Storage Schemes[J].Renewable&Sustainable Energy Reviews,2017,78:668-682.

[48] MADLENER R,SPECHT J M.An Exploratory Economic Analysis of Underground Pumped-storage Hydro Power Plants in Abandoned Coal Mines[J].Energies,2020,13(21):5634.

[49] BOTHA C D,KAMPER M J.Capability Study of Dry Gravity Energy Storage[J].Journal of Energy Storage,2019,23:159-174.

[50] MORSTYN T,CHILCOTT M,MCCULLOCH M D.Gravity Energy Storage With Suspended Weights for Abandoned Mine Shafts[J].Applied Energy,2019,239:201-206.

[51] RUOSO A C,CAETANO N R,Rocha L.Storage Gravitational Energy for Small Scale Industrial and Residential Applications[J].Inventions,2019,4(4):64.

[52] 肖立业,张京业,聂子攀,等.地下储能工程[J].电工电能新技术,2022,41(2):1-9.

[53] BOTHA C D,KAMPER M J.Capability Study of Dry Gravity Energy Storage[J].Journal of Energy Storage,2019,23:159-174.

[54] MORSTYN T,CHILCOTT M,MCCULLOCH M D.Gravity Energy Storage With Suspended Weights for Abandoned Mine Shafts[J].Applied Energy,2019,239:201-206.

[55] 王林.“重力储能”商业化渐行渐近[N].中国能源报,2022-06-27(012).

[56] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[57] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[58] CABEZA L F,MARTORELL I,MIRÓ L,et al.Introduction to Thermal Energy Storage (TES) Systems[J].Advances in Thermal Energy Storage Systems,2015(1):1-28.

[59] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[60] ANDERSSON O.Aquifer Thermal Energy Storage (ATES) [J].Thermal Energy Storage for Sustainable Energy Consumption:Fundamentals,Case Studies and Design,2007,234:155-176.

[61] JOSEPH P.Helium [R].America:U.S.Geological Survey,2021.

[62] 凌辉,周勇义,张黎伟,等.氦资源对科学仪器及科研项目的影响与对策[J].科学管理研究,2012,30(6):21-24.

[63] ANDERSON,STEVEN T.Economics,Helium,and the U.S.Federal Helium Reserve:Summary and Outlook[J].Natural Resources Research,2018,27(4):455-477.

[64] 张哲,王春燕,王秋晨,等.中国氦气市场发展前景展望[J].油气与新能源,2022,34(1):36-41.

[65] 郑雅丽,赖欣,邱小松,等.盐穴地下储采技术[J].盐科学与化工,2021,50(1):7-14.

[66] 封万芳.威远天然气提氦的经济效益分析[J].天然气工业,1989,9(3):69-71.

[67] 朱光有,丁玉祥.从天然气中走出来的氦[J].石油知识,2021(3):23-25.

[68] 陶小晚,李建忠,赵力彬,等.我国氦气资源现状及首个特大型富氦储量的发现:和田河气田[J].地球科学,2019,44(3):1024-1041.

[69] MA J L,LI Q,MIHCAEL A,et al.Power-to-gas Based Subsurface Energy Storage:A Review[J].Renewable and Sustainable Energy Reviews,2018,97:478-496.

[70] 贾善坡,金凤鸣,郑得文,等.含水层储气库的选址评价指标和分级标准及可拓综合判别方法研究[J].岩石力学与工程学报,2015,34(8):1628-1640.

[71] 梁卫国.盐类矿床控制水溶开采理论及应用[M].北京:科学出版社,2007.

[72] LIU W,JIANG D,CHEN J,et al.Comprehensive Feasibility Study of Two-well-horizontal Caverns for Natural Gas Storage in Thinly-bedded Salt Rocks in China[J].Energy,2018,143:1006-1019.

[73] 郭彬,房德华,王秀平,等.国外盐穴地下天然气储气库建库技术发展[J].断块油气田,2002,9(1):78-80.

[74] 梅生伟,公茂琼,秦国良,等.基于盐穴储气的先进绝热压缩空气储能技术及应用前景[J].电网技术,2017,41(10):3392-3399.

[75] 张博,吕柏霖,吴宇航,等.国内外盐穴储气库发展概况及趋势[J].中国井矿盐,2021,52(1):21-24.

[76] 陈海生,李泓,马文涛,等.2021年中国储能技术研究进展[J].储能科学与技术,2022,11(3):1052-1076.

[77] BAUER S J.Underground Aspects of Underground Compressed Air Energy Storage (CAES)[R].New York:USDOE National Nuclear Security Administration (NNSA),2008.

[78] EVANS D J,WEST J M.An Appraisal of Underground Gas Storage Technologies and Incidents,for the Development of Risk Assessment Methodology[J].Journal of Fuel Cell Technology,2007,6(49):97-107.

[79] MATOS C R,CARNEIRO J F,SILVA P P.Overview of Large-Scale Underground Energy Storage Technologies for Integration of Renewable Energies and Criteria for Reservoir Identification[J].The Journal of Energy Storage,2019,21:241-258.

[80] 常小娜.中国地下盐矿特征及盐穴建库地质评价[D].北京:中国地质大学,2014.

[81] FUENKENJORN K,PHUEAKPHUM D.Effects of Cyclic loading on Mechanical Properties of Maha Sarakham Salt[J].Engineering Geology,2010,112(1-4):43-52.

[82] 郭印同,赵克烈,孙冠华,等.周期荷载下盐岩的疲劳变形及损伤特性研究[J].岩土力学,2011,32(5):1354-1359.

[83] 肖建清.循环荷载作用下岩石疲劳特性的理论与实验研究[D].长沙:中南大学,2009.

[84] 马林建,刘新宇,许宏发,等.循环荷载作用下盐岩三轴变形和强度特性试验研究[J].岩石力学与工程学报,2013,32(4):849-856.

[85] 李银平,杨春和,罗超文,等.湖北省云应地区盐岩溶腔型地下能源储库密闭性研究[J].岩石力学与工程学报,2007,26(12):2430-2436.

[86] 刘伟,李银平,杨春和,等.层状盐岩能源储库典型夹层渗透特性及其密闭性能研究[J].岩石力学与工程学报,2014(3):500-506.

[87] 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,2008,28(7):1297-1304.

[88] 谭贤君,陈卫忠,杨建平,等.盐岩储气库温度-渗流-应力-损伤耦合模型研究[J].岩土力学,2009,30(12):3633-3641.

[89] 刘继芹,寇双燕,李建君,等.含夹层盐岩孔隙特征及非线性渗透模型[J].油气储运,2018,37(9):39-45.

[90] 张楠.层状盐岩储油库围岩力学和渗透特性及安全评价研究[D].重庆:重庆大学,2019.

[91] 陈结.含夹层盐穴建腔期围岩损伤灾变诱发机理及减灾原理研究[D].重庆:重庆大学,2012.

[92] 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):3553-3561.

[93] 张建配,张尚坤,贾超,等.基于屈服接近度的盐岩储气库多因素优化[J].科学技术与工程,2019,19(30):85-90.

[94] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[95] 杨强,邓检强.吕庆超等.基于能量判据的盐岩库群整体稳定性分析[J].岩石力学与工程学报,2011,30(8):1513-1521.

[96] 程丽娟,李仲奎,徐彬,等.盐岩密集储库群布置方式优化及连锁破坏研究[J].岩石力学与工程学报,2011(2):296-305.

[97] 杨强,潘元炜,邓检强,等.地下盐岩储库群临界间距与破损分析[J].岩石力学与工程学报,2012,31(9):1729-1736.

[98] 刘健,宋娟,张强勇,等.盐岩地下储气库群间距数值计算分析[J].岩石力学与工程学报,2011(S2):3413-3420.

[99] 刘耀儒,李波,杨强,等.岩盐地下油气储库群稳定性分析及连锁破坏的地层力学模型试验.[J].岩石力学与工程学报,2012,31(S2):3681-3687.

[100] 贾超,张凯,张强勇,等.基于正交试验设计的层状盐岩地下储库群多因素优化研究[J].岩土力学,2014,35(6):1718-1726.

[101] 张建配,张尚坤,贾超,等.基于屈服接近度的盐岩储气库多因素优化[J].科学技术与工程,2019,19(30):85-90.

[102] 完颜祺琪,丁国生,赵岩,等.盐穴型地下储气库建库评价关键技术及其应用[J].天然气工业,2018,38(5):111-117.

[103] 张耀民,廖鑫海,黄建平,等.国外天然气地下储存建设技术进展[J].石油科技论坛,2008(4):29-33.

[104] 完颜祺琪,冉莉娜,韩冰洁,等.盐穴地下储气库库址地质评价与建库区优选[J].西南石油大学学报(自然科学版),2015,37(1):57-64.

[105] 马小明,苏立萍,张家良,等.一种地下储气库科学选址方法:中国,CN109376948A[P].2019-02-22.

[106] 贾善坡,张辉,林建品,等.一种含水层地下储气库的选址评估方法:中国,201410482652.3 [P].2014-12-24.

[107] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[108] 张耀民,廖鑫海,黄建平,等.国外天然气地下储存建设技术进展[J].石油科技论坛,2008(4):29-33.

[109] 吴建发,钟兵,罗涛.国内外储气库技术研究现状与发展方向[J].油气储运,2007(4):1-3,62-63.

[110] 杨海军,周冬林,杜玉洁,等.盐穴储气库无垫底气技术探讨[J].石油钻采工艺,2020,42(4):501-506.

[111] 张耀民,廖鑫海,黄建平,等.国外天然气地下储存建设技术进展[J].石油科技论坛,2008(4):29-33.

[112] 张博,吕柏霖,吴宇航,等.国内外盐穴储气库发展概况及趋势[J].中国井矿盐,2021,52(1):21-24.

[113] 郑雅丽,赖欣,邱小松,等.盐穴地下储气库小井距双井自然溶通造腔工艺[J].天然气工业,2018,38(3):96-102.

[114] 杨海军.中国盐穴储气库建设关键技术及挑战[J].油气储运,2017,36(7):747-753.

[115] 张博,吕柏霖,吴宇航,等.国内外盐穴储气库发展概况及趋势[J].中国井矿盐,2021,52(1):21-24.

[116] 袁光杰,夏焱,金根泰,等.国内外地下储库现状及工程技术发展趋势[J].石油钻探技术,2017,45(4):8-14.

[117] 陈海生,李泓,马文涛,等.2021年中国储能技术研究进展[J].储能科学与技术,2022,11(3):1052-1076.

[118] BAI M X,SHEN A Q,MENG L D,et al.Well Completion Issues for Underground Gas Storage in Oil and Gas Reservoirs in China[J].Journal of Petroleum Science and Engineering,2018,171:584-591.

[119] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[120] ROGELJ J,DEN ELZEN M,HÖHNE N,et al.Paris Agreement Climate Proposals Need a Boost to Keep Warming Well Below 2℃[J].Nature,2016,534(7609):631.

[121] 张博,吕柏霖,吴宇航,等.国内外盐穴储气库发展概况及趋势[J].中国井矿盐,2021,52(1):21-24.

[122] 王元刚,陈加松,刘春,等.盐穴储气库巨厚夹层垮塌控制工艺[J].油气储运,2017,36(9):1035-1041.

[123] 杨海军.中国盐穴储气库建设关键技术及挑战[J].油气储运,2017,36(7):747-753.

[124] 肖立业,张京业,聂子攀,等.地下储能工程[J].电工电能新技术,2022,41(2):1-9.

[125] 完颜祺琪,丁国生,赵岩,等.盐穴型地下储气库建库评价关键技术及其应用[J].天然气工业,2018,38(5):111-117.

[126] 杨海军.中国盐穴储气库建设关键技术及挑战[J].油气储运,2017,36(7):747-753.

[127] 张耀民,廖鑫海,黄建平,等.国外天然气地下储存建设技术进展[J].石油科技论坛,2008(4):29-33.

[128] 张楠.层状盐岩储油库围岩力学和渗透特性及安全评价研究[D].重庆:重庆大学,2019.

[129] LUO X,WANG J H,DOONER M,et al.Overview of Current Development in Electrical Energy Storage Technologies and the Application Potential in Power System Operation[J].Applied Energy,2015,37:511-536.

[130] OZARSLAN A.Large-scale Hydrogen Energy Storage in Salt Caverns[J].International Journal of Hydrogen Energy,2012,37(19):14265-14277.

[131] 杨春和,马洪岭,刘建锋.循环加卸载下盐岩变形特性的试验研究[J].岩土力学,2009,30(12):3562-3568.

[132] GUO Y T,YANG C H,MAO H J.Mechanical Properties of Jintan Mine Rock Salt Under Complex Stress Paths[J].International Journal of Rock Mechanics&Mining Sciences,2012,56:54-61.

[133] 刘伟,NAWAZ M,李银平,等.盐岩渗透特性的试验研究及其在深部储气库中的应用[J].岩石力学与工程学报,2014,33(10):1953-1961.

[134] КУЧEPУКE B,XOБOT M P.美国氦的储量和潜在资源[J].天然气化工(C1化学与化工),1980(2):45-47.

[135] National Academies of Sciences,Engineering,and Medicine.Future Directions for the U.S.Geological Survey's Energy Resources Program[M].Washington,DC:The National Academies Press,2018.

[136] CAGLAYAN D G,WEBER N,HEINRICHS H U,et al.Technical Potential of Salt Caverns for Hydrogen Storage in Europe[J].International Journal of Hydrogen Energy,2020,45(11):6793-6805.

[137] MARCUS K,ANJALI J,Rohit B,et al.Overview of Current Compressed Air Energy Storage Projects and Analysis of the Potential Underground Storage Capacity in India and the UK[J].Renewable and Sustainable Energy Reviews,2021,139:110760.

[138] 付盼,罗淼,夏焱,等.氢气地下存储技术现状及难点研究[J].中国井矿盐,2020,51(6):19-23.

[139] LORD A S.Overview of Geologic Storage of Natural Gas with an Emphasis on Assessing the Feasibility of Storing Hydrogen[R].California:Sandia National Laboratories,2009.

[140] ZIVAR D,KUAMR S,FOROOZES H J.Underground Hydrogen Storage:A Comprehensive Review[J].International Journal of Hydrogen Energy,2021,46(45):23436-23462.

[141] OZARSLAN A.Large-scale Hydrogen Energy Storage in Salt Caverns[J].International Journal of Hydrogen Energy,2012,37(19):14265-14277.

[142] KATZ D L,TEK M R,COATS K H.Effect of Unsteady-State Aquifer Motion on the Size of an Adjacent Gas Storage Reservoir[J].Transactions of the AIME,1959,216(1):18-22.

[143] 陈锋,李银平,杨春和,等.云应盐矿盐岩蠕变特性试验研究[J].岩石力学与工程学报,2006(S1):3022-3027.

[144] 马洪岭.超深地层盐岩地下储气库可行性研究[D].武汉:中国科学院研究生院(武汉岩土力学研究所),2010.

[145] 李娜娜,赵晏强,王同涛,等.趋势观察:国际盐穴储能战略与科技发展态势分析[J].中国科学院院刊,2021,36(10):1248-1252.

[146] 袁光杰,夏焱,金根泰,等.国内外地下储库现状及工程技术发展趋势[J].石油钻探技术,2017,45(4):8-14. OBsrhBuX1mFH8CS5b4K366gGKMdLvt0pNhyW5x2ymmdo/FrIX00sueCk0Plz+boL

点击中间区域
呼出菜单
上一章
目录
下一章
×