...
首页> 外文期刊>Marine Georesources & Geotechnology >Escape route analysis after water inrush from the working face during submarine tunnel excavation
【24h】

Escape route analysis after water inrush from the working face during submarine tunnel excavation

机译:潜艇隧道挖掘过程中侵入工作面后的逃生路线分析

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

More and more deep-seated long submarine tunnels are under construction, which greatly promotes the development of tunneling technology. The complex geological conditions and frequent geological disasters have become great challenges during submarine tunnel excavation. Among them, casualties and economic losses caused by water inrush are on the top levels in all kinds of tunnel geological disasters. Escape routes after water inrush from the working face during submarine tunnel excavation are investigated and optimized in the present study. Numerical simulations are performed using the FLUENT software to probe water flow characteristics after inrush. Two common cases of water inrush during double-line submarine tunnel excavation are researched. The variation rules of velocity and pressure in the tunnels after inrush are analyzed and discussed. The optimized escape routes are achieved. Finally, the water movement laws after inrush from the working face under different excavation situations are further discussed by comparing the two case studies. Water inrush of high velocity occurs on one working face of the double-line submarine tunnel, and the research results are as follows: (1) The velocity close to the tunnel side wall is the minimum, while it is the maximum in the middle position. (2) The pressure changes greatly at the intersection area of the cross passage and the tunnels. (3) The velocity and pressure nearby the working face without water inrush are both small. (4) The velocity at the high location of the cross passage is relatively small.
机译:越来越深坐着的长潜艇隧道正在建设中,大大促进了隧道技术的发展。复杂的地质条件和频繁的地质灾害在潜艇隧道挖掘过程中变得巨大挑战。其中,浪费造成的伤亡和经济损失是各种隧道地质灾害的最高水平。在潜艇隧道挖掘过程中逃逸路线在潜艇隧道挖掘过程中进行,并在本研究中进行了优化。使用流畅的软件进行数值模拟,以浪涌探测水流量特性。研究了双线潜艇隧道挖掘过程中的两种常见液体涌入。分析并讨论了浪涌后隧道速度和压力的变化规则。实现了优化的转义路线。最后,通过比较两种案例研究进一步讨论了在不同挖掘情况下从工作面涌入的水运动法。高速的潮流发生在双线潜艇隧道的一个工作面上,研究结果如下:(1)靠近隧道侧壁的速度最小,而其在中间位置的最大值。 (2)压力在交叉通道和隧道的交叉点变化。 (3)工作面没有浪涌的速度和压力都很小。 (4)交叉通道的高位置的速度相对较小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号