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Physical simulation of construction and control of two butted-well horizontal cavern energy storage using large molded rock salt specimens

机译:利用大型模压岩盐标本建造和控制两个对接水平井洞储能的物理模拟

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摘要

Underground salt caverns are used globally for large-scale energy storage. In the thinly bedded rock salt in China, two butted-well horizontal (TWH) caverns, as alternatives for energy storage, are regarded as having better suitability and economy than vertical caverns. However, understandings of the cavern shape development and control methods of TWH-caverns remain insufficient. To overcome these shortcomings with respect to TWH-caverns, we conducted physical simulations of TWH-cavern construction using a high strength steel mold and molded large rock salt specimens. We established a platform for physical simulation of TWH-cavern water-solution construction using the large molded rock salt specimens, so that the construction process is visible and easily observed. Six groups of physical simulations of TWH-cavern construction were designed and implemented. The variables which affect the cavern outline expansion were investigated and compared, including water injection rate, transferring of injection well, oil blanket, and retreating position of the water outlet. Finally the expansion rules of the cavern outline, and different effects when injecting from an inclined well vs. From a vertical well were explored, as well as an attempt of retreating water outlet. This study provides significant guidance for constructing horizontal caverns for energy storage in thinly bedded rock salt. (C) 2019 Elsevier Ltd. All rights reserved.
机译:地下盐穴在全球范围内广泛用于能量存储。在中国薄层岩盐中,两个竖井式水平(TWH)洞穴作为储能的替代品,被认为比垂直式洞穴具有更好的适应性和经济性。但是,对TWH洞穴的洞穴形状发展和控制方法的了解仍然不足。为了克服有关TWH洞穴的这些缺点,我们使用高强度钢模和成型的大型岩盐样品对TWH洞穴的构造进行了物理模拟。我们建立了一个使用大型模压岩盐标本对TWH洞穴水溶液施工进行物理模拟的平台,从而使施工过程可见并易于观察。设计并实施了六组TWH洞室构造的物理模拟。研究和比较了影响洞穴轮廓扩展的变量,包括注水速率,注水井的转移,油层和出水口的后退位置。最后,探讨了洞穴轮廓的膨胀规律,以及从倾斜井与垂直井注水时的不同效果,以及尝试撤回出水口的方法。这项研究为在薄层岩盐中建造用于储能的水平洞穴提供了重要指导。 (C)2019 Elsevier Ltd.保留所有权利。

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