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首页> 外文期刊>Rock Mechanics and Rock Engineering >A New Elasto-Viscoplastic Damage Model Combined with the Generalized Hoek-Brown Failure Criterion for Bedded Rock Salt and its Application
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A New Elasto-Viscoplastic Damage Model Combined with the Generalized Hoek-Brown Failure Criterion for Bedded Rock Salt and its Application

机译:层状岩盐弹性弹塑性损伤模型与广义Hoek-Brown准则的组合及其应用

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摘要

According to the requirement of the West-East Gas Transmission Project in China, the solution-mined cavities located in the Jintan bedded salt formation of Jiangsu province will be utilized for natural gas storage. This task is more challenging than conventional salt dome cavern construction and operation due to the heterogeneous bedding layers of the bedded salt formation. A three-dimensional creep damage constitutive model combined with the generalized Hoek-Brown model is exclusively formulated and validated with a series of strength and creep tests for the bedded rock salt. The viscoplastic model, which takes the coupled creep damage and the failure behavior under various stress states into account, enables both the three creep phases and the deformation induced by vicious damage and plastic flow to be calculated. A further geomechanical analysis of the rapid gas withdrawal for the thin-bedded salt cavern was performed by implementing the proposed model in the finite difference software FLAC~(3D). The volume convergence, the damage and failure propagation of the cavern, as well as the strain rate of the salt around the cavern, were evaluated and discussed in detail. Finally, based on the simulation study, a 7-MPa minimum internal pressure is suggested to ensure the structural stability of the Jintan bedded salt cavern. The results obtained from these investigations provide the necessary input for the design and construction of the cavern project.
机译:根据中国西气东输项目的要求,位于江苏金坛层状盐岩地层的溶洞将用于天然气存储。由于层状盐形成层的非均质层,该任务比常规盐穹顶洞穴的建造和操作更具挑战性。专门制定了三维蠕变损伤本构模型并与广义Hoek-Brown模型相结合,并通过一系列的强度和蠕变测试对层状岩盐进行了验证。粘塑性模型考虑了蠕变损伤和各种应力状态下的破坏行为,可以计算出三个蠕变阶段以及由恶性损伤和塑性流动引起的变形。通过在有限差分软件FLAC〜(3D)中实施所提出的模型,对薄层盐洞快速抽气进行了进一步的地质力学分析。对洞穴的体积收敛性,破坏和破坏传播以及洞穴周围盐分的应变率进行了评估和详细讨论。最后,在模拟研究的基础上,建议最小内压为7 MPa,以确保金坛层状盐洞的结构稳定性。从这些调查中获得的结果为洞穴工程的设计和施工提供了必要的输入。

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