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Analysis of the Mechanism of Water Inrush in Karst Tunnels

机译:岩溶隧道突水机理分析

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In China, carbonate rocks cover an area of 3.443 million km~2, which consist of 36% of the nation's territory. It is not unusual to encounter karst related problems in tunnel construction. It is a difficult problem to build tunnels in complex karstified area. Strong and complex karstification makes it dangerous because water inrush is common during tunneling. About 50% of the built tunnels had the water inrush problems. The newly built Yuanliangshan Tunnel on Yu-Huai railway line crosses the karstified area, many times of water inrush occurred and caused big damage. Now, a railway line from Wanzhou to Yichang crosses the strong karstified area, there are 127 tunnels and most are karst tunnels, of which 10 are large karst tunnels and several tunnels such as Bieyancao and Qiyueshan tunnels had experienced water inrush. Thus, water inrush has become a big obstacle in tunnel construction in karst area. In this paper, the performance of karst cavities with high pressurized water are studied due to their possible dangerous and frequent burst or collapse. A model is developed to predict the critical thickness of the water-bearing rock between the karst rock cavity and the tunnel. Based on this model, the cause of the water inrush from Yuanliangshan Tunnel in Tongmangling section is analyzed. Proposed model can also predict the water inrush phenomenon. As another example, the proposed model is applied to forecast the water inrush of Qiyueshan Tunnel in order to ensure the safety in tunnel construction.
机译:在中国,碳酸盐岩覆盖面积为344.3万平方公里,占全国领土的36%。在隧道施工中遇到与喀斯特有关的问题并不罕见。在复杂的岩溶区建造隧道是一个难题。强烈而复杂的喀斯特地貌使其成为危险,因为在隧道掘进过程中经常发生突水。大约有50%的已建隧道有突水问题。渝淮铁路新建的圆梁山隧道穿越岩溶区,多次发生突水,造成较大破坏。如今,万州至宜昌的一条铁路穿越了整个岩溶区,共有127条隧道,其中大部分为岩溶隧道,其中10条为大型岩溶隧道,而别眼草隧道和祁月山隧道等几处隧道均已发生突水。因此,突水已经成为岩溶地区隧道建设的一大障碍。由于压力危险,并且经常发生爆裂或坍塌,因此研究了高压水溶洞的性能。建立了一个模型来预测岩溶岩洞与隧道之间的含水岩石的临界厚度。在此模型的基础上,对通man岭段元梁山隧道突水原因进行了分析。提出的模型还可以预测水的涌入现象。作为另一个例子,将所提出的模型用于预测祁月山隧道的突水量,以确保隧道施工的安全性。

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