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Time-dependent behaviour and stability evaluation of gas storage caverns in salt rock based on deformation reinforcement theory

机译:基于变形强化理论的盐岩储气洞时变行为与稳定性评价

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摘要

To simulate the time-dependent deformation and quantitatively evaluate the global stability of gas storage caverns in salt rock, the nonlinear viscoelastic, viscoplastic and viscodamage models are incorporated into the deformation reinforcement theory (DRT). A quantitative criterion for the long-term stability evaluation of gas storage caverns is established during the non-equilibrium evolution process based on a T-△E curve, where T is time and △E is plastic complementary energy (PCE). PCE quantitatively indicates the global stability of gas storage caverns. Over force clearly exhibits the local failure position and mode of gas storage caverns, determines the internal effective driving force of unrecoverable time-dependent deformation or damage evolution, and is also the required optimal reinforcement force. DRT is applied to analyse the time-dependent deformation, global stability and local failure of a double-cavern of gas storage in salt rock.
机译:为了模拟随时间变化的变形并定量评估盐岩中储气洞的整体稳定性,将非线性粘弹性,粘塑性和粘滞破坏模型纳入变形加强理论(DRT)。基于T-△E曲线建立了非平衡演化过程中储气洞长期稳定性评估的定量标准,其中T为时间,△E为塑性互补能(PCE)。 PCE定量表示储气洞穴的整体稳定性。过大的力清楚地显示出储气洞的局部失效位置和模式,确定了不可恢复的随时间变化的变形或破坏演变的内部有效驱动力,也是所需的最佳加固力。 DRT用于分析盐岩中双储气层随时间的变形,整体稳定性和局部破坏。

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