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Modeling the construction of energy storage salt caverns in bedded salt

机译:层状盐中储能盐洞的建模

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摘要

During the construction of energy storage salt caverns in bedded salt, the unpredictable failure of interlayers results in irregularly shaped caverns with lower storage capacity and with potential safety hazards. A model is established of the coupled salt dissolution and interlayer failure during the construction of a salt cavern. Equations of the salt dissolution rate and of the brine concentration-flow field of the dynamic cavern development are introduced. Failure of the interlayers with a soluble skeleton is described in three steps as disintegration, fall and accumulation. Failure of the interlayers with an insoluble skeleton is modeled by location determination, strength calculation and collapse implementation. A C++ program is developed for the implementation of the model. A cavern, JT86, in Jintan Gas Storage, China, is simulated by the proposed model and by a traditional model. The disintegration, collapse, fall and accumulation of the insoluble interlayers can be simulated by the proposed model, which results in a more accurate cavern shape prediction. The simulation shows a dissolution-collapse-dissolution cycle and a self-locking condition, which might be the reason for the uneven development of caverns in inclined bedded salt. To increase the cavern stability, an extra leaching stage is suggested around the overhanging interlayers to bring the collapse under control.
机译:在层状盐中储能盐洞的建造过程中,不可预测的中间层破坏导致形状不规则的洞,其储水量较低,并存在潜在的安全隐患。建立了盐洞建造过程中盐溶和层间破坏耦合的模型。介绍了动态溶洞发育过程中盐溶速率和盐水浓度-流场方程。具有可溶骨架的中间层的破坏分为三个步骤,分别是崩解,掉落和堆积。具有不溶性骨架的中间层的失效通过位置确定,强度计算和倒塌实现建模。开发了用于该模型实现的C ++程序。利用提出的模型和传统模型对位于中国金坛储气库的JT86洞穴进行了模拟。所提出的模型可以模拟不溶性中间层的崩解,塌陷,塌陷和堆积,从而可以更准确地预测洞穴形状。模拟显示了溶蚀-塌陷-溶蚀循环和自锁条件,这可能是倾斜的层状盐中洞穴不均匀发育的原因。为了增加洞穴的稳定性,建议在悬垂的夹层周围增加一个浸出阶段,以控制塌陷。

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