首页> 外文期刊>International Journal of Rock Mechanics and Mining Sciences >Physical model test and numerical simulation for the stability analysis of deep gas storage cavern group located in bedded rock salt formation
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Physical model test and numerical simulation for the stability analysis of deep gas storage cavern group located in bedded rock salt formation

机译:位于卧式岩盐形成的深气体储存洞穴组稳定性分析的物理模型试验与数值模拟

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摘要

The stability of gas storage cavern complex constructed in bedded salt rock formation might be influenced by multiple factors during the operation process. In order to assess these effects, three-dimensional rheological model tests were conducted in this study. Physical model with four ellipsoid caverns were constructed with scaled in-situ stresses applied through independent sets of hydraulic jacks and internal pressure applied by digital-controlled latex balloons. Influences of different factors on the deformation properties of surrounding rock were systematically evaluated, including the gas recovery and injection rate, the loss of pressure, the extremely low and high gas pressure, and the pillar width and pressure difference between adjacent caverns. Test results revealed that the deformation of the cavern wall was accelerated when the gas extraction/injection rate exceeds 0.65 MPa/d. Loss of internal pressure dramatically promoted the deformation. Tertiary creep stage arose when the internal pressure was too low (3 MPa) or too high (22 MPa). Internal pressure difference and pillar width worked together to affect the deformation properties. Tests results obtained in this study provided physical evidence for the safety analysis of cavern group as well as the optimization of design and operation scheme. These results can also serve as benchmark for the validation of numerical models.
机译:在卧式盐岩形成中构建的气体储存洞穴复合物的稳定性可能受到操作过程中多种因素的影响。为了评估这些效果,在本研究中进行了三维流变模型试验。具有四个椭球洞穴的物理模型采用缩放的原位应力,通过独立的液压插孔和由数字控制的乳胶气球施加的内部压力施加。系统评价不同因素对周围岩石变形特性的影响,包括气体回收和注射速率,压力损失,极低气压,高气体压力,以及相邻洞穴之间的柱宽度和压力差。测试结果表明,当气体提取/注射速率超过0.65MPa / d时加速了洞穴壁的变形。内部压力损失显着促进了变形。当内部压力太低(3MPa)或过高时(22MPa)时,就会出现三级蠕变阶段。内部压力差和支柱宽度在一起以影响变形性能。本研究中获得的测试提供了洞穴组安全分析的物理证据以及设计和操作方案的优化。这些结果也可以作为数值模型验证的基准。

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