期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
盐穴压气蓄能储库近场围岩稳定性分析 被引量:1
1
作者 梁五星 唐璐宣 +2 位作者 李新奇 程功 姜德义 《地下空间与工程学报》 CSCD 北大核心 2023年第S02期698-706,共9页
压缩空气储能是解决能源供应和环境污染问题的有效方式之一,而盐岩被视作是最适合压缩空气储能的地质结构。压缩空气储能具有注采频率高的特点,因此为研究盐穴在长期发电过程中腔体稳定性,结合Ansys和Flac3D进行数值模拟,得到盐穴在不... 压缩空气储能是解决能源供应和环境污染问题的有效方式之一,而盐岩被视作是最适合压缩空气储能的地质结构。压缩空气储能具有注采频率高的特点,因此为研究盐穴在长期发电过程中腔体稳定性,结合Ansys和Flac3D进行数值模拟,得到盐穴在不同压力区间、腔体埋深、压力差下注采气180次后腔体顶部位移、体积收缩率的变化情况。结果表明:(1)理想状态下任何因素对腔体位移的影响在水平或竖直方向都呈现对称状态,腔体顶部位移变化大于底部;(2)盐穴腔体变形情况随着压力区间范围的减小、或腔体埋深的增大、压力差的增大而增大,盐穴腔体的初始变形随埋深越大而越大;(3)根据线性拟合结果判断3个因素对腔体稳定性的影响效果为腔体埋深>压力区间>压力差。 展开更多
关键词 压气蓄能 盐穴稳定性 数值模拟
下载PDF
Stability analysis of the pillars between bedded salt cavern gas storages by cusp catastrophe model 被引量:2
2
作者 WANG TongTao YAN XmangZhen +1 位作者 YANG HengLin YANG XiuJuan 《Science China(Technological Sciences)》 SCIE EI CAS 2011年第6期1615-1623,共9页
The failure of pillars between bedded salt cavern gas storages can be seen as processes that the deformations of pillars convert from continuous gradual change system to catastrophe state,which are typical nonlinear c... The failure of pillars between bedded salt cavern gas storages can be seen as processes that the deformations of pillars convert from continuous gradual change system to catastrophe state,which are typical nonlinear catastrophe problems.In the paper,the cusp catastrophe model is proposed to obtain the stability factors of pillars.It can overcome the shortages of traditional strength reduction finite element method(SR FEM) and greatly improve the accuracy of stability factors obtained by numerical simulations.The influences of cavern depth,gas pressure,pillar width,and time on the stability factors are studied.Y-1 and Y-2 salt cavern gas storages,located at Jiangsu province of China,were simulated as examples.The stability factors of pillars between Y-1 and Y-2 were evaluated,and the running parameters were recommended to ensure the pillars stability.The results showed that the cusp catastrophe model has high practicability and can precisely predict the stability factors.The stability factors are equidirectional with the increase of gas pressure and pillar width,but reverse to the increase of cavern depth and time.The stability factors of pillars between Y-1 and Y-2 are small for narrow widths,which are influenced greatly by gas pressure,time,pressure difference,and gas production rate.In order to ensure the safety of pillars,the lowest gas pressure,safe running time,max.pressure difference and max.gas production rate of Y-1 and Y-2 were recommended as 7 MPa,5 years,3 MPa,and 0.50 MPa/d,respectively. 展开更多
关键词 salt cavern gas storages pillar stability cusp catastrophe model stability factor numerical simulation
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部