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Controlled Blasting for Twin Tunnels with a Shallow Cover under an Operating Railway Line

机译:在操作铁路线下的浅盖对双隧道控制爆破

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This paper describes in detail the controlled blasting adopted and the measurements undertaken for the successful excavation of large twin tunnels under a shallow cover for a six-lane highway project in India. The tunnels are D-shaped, each 15 m in diameter, and the cover between the tunnels and the existing railway track was about 14 m. These twin tunnel tubes were characterised by two separate three-lane carriageways for each direction of traffic, and were planned with about 25 m of reinforced cement concrete (RCC) portals at the entrance and exit of the tunnels. The major challenge of the project was the blasting of tunnels in rock below an operating railway line. As the tunnels approached the area below the railway line, the ground vibrations were monitored vertically above the blasting faces and on the railway track sleepers. Vibration intensities between those generated from tunnel blasting and those from the movement of the trains were compared, and it was found that the vibrations from blasting were lower than those from the moving trains. Though the permissible level of ground vibration based on the Indian Standard (IS) code happens to be 70 mm/ s, the maximum charge per delay was calculated restricting this limit to 50 mm/s. This ensured that the vibrations in the vicinity of the railway tracks never exceeded the prescribed limit of 70 mm/s. The surface ground settlement before and after the blasts were also measured using an optical levelling instrument, which confirmed that there was no significant impact on the surface movements due to blasting. Extensometer readings inside the tunnels showed that there was no deformation in the tunnel. These twin tunnels are now operational and are providing faster connectivity with safety.
机译:本文详细介绍了所采用的受控爆破和在印度六车道公路项目的浅封面下成功挖掘大型双隧道的测量。隧道是D形,每个直径为15米,隧道和现有铁路轨道之间的盖子约为14米。这些双隧道管的特征在于两个单独的三车道车道,用于每个交通方向,并在隧道的入口和出口处计划大约25米的加固水泥混凝土(RCC)门户网站。该项目的主要挑战是在经营铁路线以下的岩石中爆破隧道。随着隧道接近铁路线以下的区域,地面振动垂直地监测爆破面上,并在铁路轨道睡眠机上被监测。比较从隧道爆破产生的振动强度和从列车移动的那些之间的强度,发现爆破的振动低于来自移动列车的振动。虽然基于印度标准(是)代码的允许级别的地面振动水平恰好为70 mm / s,但计算每个延迟的最大电荷将该限制限制为50 mm / s。这确保了铁路轨道附近的振动从未超过70 mm / s的规定限制。在使用光学平流仪器之前和爆炸之前和之后的表面接地沉降,这证实了由于喷砂引起的表面运动没有显着影响。隧道内的伸展量表读数显示隧道中没有变形。这些双隧道现在正在运行,并提供更快的连接性与安全性。

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