Engineering geological and geotechnical evaluation of Sathya Sai Prasanthi Nilayam railway tunnel, Andhra Pradesh, India

A. Naithani, P. Jain
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Abstract

Detailed engineering geological investigations were carried out for a railway tunnel which was constructed more than two decades ago. 3D engineering geological mapping was carried out using Brunton Compass and Total Station Surveying instruments in 1:100 scale. Coarse-grained pink and grey granite, hornblende-biotite gneiss and dolerite dyke of Archaean age and Lower Proterozoic age were mapped. Rock mass was intersected by sub-horizontal, inclined, and vertical joint sets, which were continuous and persistent, smooth, and planar with thick filling of decomposed and crushed sheared material or with thin coating of clay material. Based on the Q-system, rock mass was classified into different classes. On the basis of large-scale engineering geological mapping and Norwegian Method of Tunnelling, a support system was recommended which includes rock bolt, fibre reinforced shotcrete, grouting and reinforced ribs of sprayed concrete and the same is implemented by the agency. As per the best knowledge of the authors, reinforced ribs of sprayed concrete are first time used for transportation tunnels in India and it will be more effective if it will be compared with ISMB or Lattice Girder.
印度安得拉邦 Sathya Sai Prasanthi Nilayam 铁路隧道的工程地质和岩土评估
对二十多年前修建的一条铁路隧道进行了详细的工程地质调查。使用 Brunton Compass 和全站仪测量仪器以 1:100 的比例进行了三维工程地质测绘。绘制了粗粒粉色和灰色花岗岩、角闪石-黑云母片麻岩以及始新世和下新生代的辉绿岩岩体。岩体与次水平、倾斜和垂直节理组相交,这些节理组连续、持久、光滑、平面,由厚厚的分解和破碎的剪切物质或薄层粘土物质填充。根据 Q 系统,岩体被划分为不同等级。在大规模工程地质测绘和挪威隧道开挖法的基础上,推荐了一套支护系统,包括岩石螺栓、纤维加固喷射混凝土、灌浆和喷射混凝土加固肋,并由该机构实施。据作者所知,喷射混凝土加固肋是印度首次用于交通隧道,如果与 ISMB 或格状梁相比,效果会更好。
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