Stability analysis of surrounding rock of multi-cavern for compressed air energy storage

被引:0
|
作者
Ji, Wendong [1 ]
Wang, Shu [2 ]
Wan, Jifang [1 ]
Cheng, Shaozhen [1 ]
He, Jiaxin [1 ]
Shi, Shaohua [1 ]
机构
[1] China Energy Digital Technol Grp Co Ltd, Beijing 100044, Peoples R China
[2] Beijing Jiaotong Univ, Sch Civil & Architectural Engn, Beijing 100044, Peoples R China
来源
ADVANCES IN GEO-ENERGY RESEARCH | 2024年 / 13卷 / 03期
关键词
Compressed air energy storage; working pressure; cavern type; pillar space; cavern diameter; TEMPERATURE; PERFORMANCE; PRESSURE;
D O I
10.46690/ager.2024.09.03
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Compressed air energy storage in artificial caverns can mitigate the dependence on salt cavern and waste mines, as well as realize the rapid consumption of new energy and the "peak-cutting and valley-filling" of the power grid. At the same time, the safety and stability of the surrounding rock of gas storage has attracted extensive attention. Based on finite element simulation, a numerical model of shallow-buried double-chamber for compressed air energy storage is established, and the influence of working pressure, cavern type, pillar space, and cavern diameter on the mechanical behavior of surrounding rock is analyzed. It is discovered that the cavern type significantly affects the response of the surrounding rock, whose deformation and plastic strain in the horseshoe-shaped cavern is significantly larger than that in the circular cavern. For circular caverns, the pillar space of 2 similar to 3 times the cavern diameter is only suitable for low working pressure, and the plastic strain and deformation of surrounding rock increases sharply with the increase of working pressure. It is more appropriate to select the pillar space that is 4 times the cavern diameter when the working pressure is greater than 16 MPa. With the increase in the cavern diameter, the maximum deformation of the surrounding rock accelerates rapidly.
引用
收藏
页码:175 / 175
页数:1
相关论文
共 50 条
  • [11] Parameter design of the compressed air energy storage salt cavern in highly impure rock salt formations
    Li, Hang
    Ma, Hongling
    Zhao, Kai
    Zhu, Shijie
    Yang, Kun
    Zeng, Zhen
    Zheng, Zhuyan
    Yang, Chunhe
    ENERGY, 2024, 286
  • [12] Stability analysis of overlying rock mass of lined rock caverns for compressed air energy storage
    Yi, Qi
    Sun, Guan-hua
    Yao, Yuan-feng
    Gui, Ben
    Shang, Hao-liang
    Ji, Wen-dong
    ROCK AND SOIL MECHANICS, 2024, 45 (12) : 3523 - 3532
  • [13] Stability of a lined rock cavern for compressed air energy storage containing a weak interlayer during blasting in the adjacent cavern: model tests and numerical simulation
    Zhang, Mengchen
    Luo, Yi
    Gong, Hangli
    Liu, Xin
    Deng, Yunchen
    GEOMECHANICS AND GEOPHYSICS FOR GEO-ENERGY AND GEO-RESOURCES, 2023, 9 (01)
  • [14] An Analytical Solution for Mechanical Responses Induced by Temperature and Air Pressure in a Lined Rock Cavern for Underground Compressed Air Energy Storage
    Zhou, Shu-Wei
    Xia, Cai-Chu
    Du, Shi-Gui
    Zhang, Ping-Yang
    Zhou, Yu
    ROCK MECHANICS AND ROCK ENGINEERING, 2015, 48 (02) : 749 - 770
  • [15] Stability of a lined rock cavern for compressed air energy storage containing a weak interlayer during blasting in the adjacent cavern: model tests and numerical simulation
    Mengchen Zhang
    Yi Luo
    Hangli Gong
    Xin Liu
    Yunchen Deng
    Geomechanics and Geophysics for Geo-Energy and Geo-Resources, 2023, 9
  • [16] Feasibility analysis on the debrining for compressed air energy storage salt cavern with sediment
    Xie, Dongzhou
    Jiang, Tingting
    Ren, Gaofeng
    Chi, Ziqi
    Cao, Dongling
    He, Tao
    Liao, Youqiang
    Zhang, Yixuan
    RENEWABLE ENERGY, 2024, 237
  • [17] Research on stability of the key roof above horizontal salt cavern for compressed air energy storage
    Zhang Gui-min
    Wang Zhen-shuo
    Liu Yu-xuan
    Luo Ning
    Dong Ji-wei
    ROCK AND SOIL MECHANICS, 2021, 42 (03) : 800 - 812
  • [18] Mechanical properties of rubber sealing material in lined rock cavern for compressed air energy storage considering thermo-mechanical coupling effect
    Liang, Weiming
    Yang, Diansen
    Bian, Hanbing
    CONSTRUCTION AND BUILDING MATERIALS, 2025, 458
  • [19] Thermodynamic analysis of cavern and throttle valve in large-scale compressed air energy storage system
    Zhang, Shuyu
    Wang, Huanran
    Li, Ruixiong
    Li, Chengchen
    Hou, Fubin
    Ben, Yue
    ENERGY CONVERSION AND MANAGEMENT, 2019, 183 : 721 - 731
  • [20] Analytical solution for load sharing in the structure of an underground lined rock cavern for compressed air energy storage and analysis of influencing factors
    Zhang, Guohua
    Xiang, Yue
    Wang, Xinjin
    Xiong, Feng
    Tang, Zhicheng
    Hua, Dongjie
    Yanshilixue Yu Gongcheng Xuebao/Chinese Journal of Rock Mechanics and Engineering, 2024, 43 : 3633 - 3650