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Design and test aspects of a water curtain system for underground oil storage caverns in China

机译:中国地下储油洞水幕系统的设计与测试

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A water curtain system consists of many boreholes arranged in a systematic manner. To maintain tight seals when storing substances (e.g., crude oil), water curtain systems are usually employed for underground storage in hard rock. With the aid of these systems, stable seepage fields develop around storage caverns, and hydrodynamic containment is achieved in the storage caverns. In this paper, several issues regarding the design and testing of a water curtain system in underground oil storage caverns in China were investigated. Regarding the design of these systems, natural and artificial containments were compared, and the role of hydrogeology in the selection of containment was explored. A literature review on the geometrical parameters of these systems used in storage caverns was performed and provided reference for the design of the proposed water curtain system. The influence of rock joint orientations on the arrangement of boreholes in the curtain system was addressed; it was concluded that the boreholes should be arranged perpendicularly to the dominant joints to obtain a system with good performance. Regarding the testing of these systems, a procedure used to evaluate the performance of the proposed water curtain system was developed. A method used to determine the interconnectivity of the system was also developed, and an improved test procedure was proposed based on the test results. A curtain system injection test was performed, and the groundwater flow rates into both the water curtain system and the storage caverns were measured. It was shown that the groundwater flow rates were dominated by the groundwater flow in the rock joints and the areas where high groundwater flow rates around the cavern surfaces coincided with those where high groundwater flow rates appeared at water curtain boreholes. (C) 2015 Elsevier Ltd. All rights reserved.
机译:水幕系统由许多井眼组成,井眼井井有条。为了在存储物质(例如原油)时保持紧密的密封,通常将水幕系统用于硬岩石的地下存储。借助这些系统,在存储洞穴周围形成了稳定的渗流场,并在存储洞穴中实现了流体动力围堵。本文研究了有关中国地下储油洞中水幕系统设计和测试的几个问题。关于这些系统的设计,比较了自然和人工安全壳,并探讨了水文地质学在安全壳选择中的作用。对用于存储洞穴的这些系统的几何参数进行了文献综述,并为所提出的水幕系统的设计提供了参考。讨论了岩石节理取向对帷幕系统中井眼布置的影响;结论是,井眼应垂直于主要节理布置,以获得性能良好的系统。关于这些系统的测试,开发了一种用于评估所提出的水幕系统性能的程序。还开发了一种用于确定系统互连性的方法,并根据测试结果提出了一种改进的测试程序。进行了幕帘系统注入试验,并测量了进入水幕帘系统和储水洞穴的地下水流量。结果表明,地下水流率主要受岩缝中地下水流的影响,洞穴表面周围的高地下水流率与在水幕钻孔处出现高地下水流率的区域重合。 (C)2015 Elsevier Ltd.保留所有权利。

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