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Design of Water Curtain Control System of Underground Water Seal Oil Cavern

机译:地下水封油洞水幕控制系统设计

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摘要

Widely building of the large span underground water seal oil caverns must gradually propose more stringent requirements of the design level of oil caverns. The large span underground water seal oil cavern not only needs to rely on the natural conditions of the buried groundwater, but must also relies on the water curtain hole installed around the cavern in a certain pressure to provide a stable water injection pressure to prevent oil leakage. The normal water curtain system can be improved to function more powerfully and economically. The improvement benefits from the theory of flow closed loop proposed and critical storage pressure given according to the theory. Details of the new water curtain system layout and its variable function according to requirement alternation are described. Taking a large domestic underground oil cavern as an example, comparison of seepage of fractured rock of different design is analyzed under the threedimensional stress field using FLAC3D codes. Combining the relationship between the effective stress of infiltration formation and water pressure around the caverns, the analysis proves that the new layout not only meets the demand of water sealing effect and prevents oil leakage while reducing cavern inflow, but also improves the rock stability and engineering emergency safety.
机译:广泛建设的大跨度地下水封油洞必须逐步提出对油洞设计水平更为严格的要求。大跨度地下水封油洞不仅需要依靠地下地下水的自然条件,而且还必须依靠在一定压力下在洞穴周围安装的水幕孔来提供稳定的注水压力以防止漏油。 。可以改进普通的水幕系统,使其功能更强大,更经济。该改进得益于提出的流量闭环理论和根据该理论给出的临界存储压力。详细描述了新的水幕系统布局及其根据需求变化的可变功能。以国内某大型地下油洞为例,利用FLAC3D代码在三维应力场下分析了不同设计的裂隙岩的渗流比较。结合渗流有效应力与溶洞周围水压之间的关系,分析表明,新布局不仅可以满足水封效果的要求,可以在减少溶洞流入的同时防止漏油,而且可以提高岩石的稳定性和工程性。紧急安全。

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