首页> 外文会议>US Rock Mechanics/Geomechanics Symposium >Numerical study of thermo-mechanical effects on the viscous damage behavior of rock salt caverns
【24h】

Numerical study of thermo-mechanical effects on the viscous damage behavior of rock salt caverns

机译:热机械效应对岩盐洞穴粘性损伤行为的数值研究

获取原文
获取外文期刊封面目录资料

摘要

Underground cavities in rock salt have received increased attention for the storage of oil, gas, and compressed air energy. In this study, the transition between secondary and tertiary creep in salt is determined by a micro-macro model: The initiation of grain breakage is correlated with the acceleration of viscoplastic deformation rate and with the initiation of damage at the macroscopic scale. Salt stiffness decreases when macroscopic damage increases, which allows predicting the evolution of the damage zone around salt caverns used for geological storage. After implementing the phenomenological model into the Finite Element Method (FEM) program POROFIS, two thermo-mechanical coupled stress paths are simulated to analyze stress concentrations and viscous damage around a 650-m-deep cavern in axisymmetric conditions. Numerical results indicate that, despite the pressurization or depressurization-induced temperature variation, internal gas temperature always tends to approach the primary surrounding rock mass value. The viscous deformation induced by thermo-mechanical couplings significantly affects the original stress field at the cavern wall and induces high damage at the most concave sections of the cavern. Results reveal the significant influences of idle time, gas pressure range, and injection and withdrawal cycles on stress, strain and temperature distributions in the vicinity of the cavern. More analyses are needed to confirm the influence of thermo-mechanical cycles of pressurization and depressurization, and to design long-term cavern operations.
机译:岩盐的地下腔接受了储存油,气体和压缩空气能量的增加。在该研究中,盐中的次级和三级蠕变之间的过渡由微米模型确定:谷物破裂的启动与粘塑性变形率的加速度相关,并在宏观尺度造成损伤。当宏观损伤增加时,盐刚度降低,这允许预测用于地质储存的盐洞周围的损伤区的演变。在将现象学模型实施到有限元方法(FEM)程序Porofis之后,模拟了两个热机械耦合应力路径,以分析轴对称条件下650 m深洞穴周围的应力浓度和粘性损坏。数值结果表明,尽管加压或减压诱导的温度变化,但内部气体温度总是倾向于接近初级围岩质量值。热机械联轴器引起的粘性变形显着影响洞穴壁处的原始应力场,并在洞穴的最凹入部分处引起高损伤。结果揭示了空转时间,气体压力范围和注射循环对洞穴附近的应力,应变和温度分布的显着影响。需要更多的分析来确认热机械循环的加压和减压的影响,并设计长期洞穴操作。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号