The Relation of the Method Used in Tunneling Operations with the Geological Structure Example of the Black Sea Coastal Road

Gökhan Külekçi
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Abstract

Transportation tunnels are the most preferred method to facilitate transportation in mountainous and rough terrains. The excavation method and the choice of fortification tools in tunnel construction depend on the geological structure of the tunnel route. Correct formation determination and determination will reduce the cost and eliminate many risks. The Black Sea region has a very mountainous and rugged terrain. The most obvious method used to overcome rough terrain is road tunnels. The rock classification of the tunnel route and the support to be formed accordingly are very important in the selection of the method to be applied in the highway tunnel constructions. Within the scope of this study, Trabzon-Akyazi region, which is an important part of the Black Sea coastal road, was studied. The geological formations on the route of the 3-lane and double-tube tunnel with a length of approximately 2476 meters, which is planned to be built within the highway passing through this region, were examined and the method used in the tunnel construction was determined. As a result of the analyzes and calculations, it has been determined that the dominant unit along the tunnel routes is the agglomerate of the Besirli formation and the New Austrian Tunneling (NATM) method is applicable. The rock classes found were determined to be B3 and C2 classes according to NATM. Excavations in the tunnel were carried out by drilling and blasting method in the form of the upper half and the lower half.
黑海海岸公路地质构造实例与隧道施工方法的关系
在山区和崎岖地带,运输隧道是方便运输的首选方式。隧道施工中开挖方法和工事工具的选择取决于隧道路线的地质构造。正确的地层确定和确定将降低成本并消除许多风险。黑海地区多山,地势崎岖。克服崎岖地形最明显的方法是公路隧道。在公路隧道施工方法的选择中,隧道路线的岩石分类和相应形成的支护是非常重要的。在本研究的范围内,研究了黑海沿海公路的重要组成部分Trabzon-Akyazi地区。对拟在横贯该地区的高速公路内修建的长约2476米的三车道双管隧道的路线地质构造进行了考察,确定了隧道施工方法。通过分析计算,确定了沿隧道路线的优势单元为贝斯里地层团聚体,适用新奥法。根据NATM,发现的岩石等级被确定为B3和C2级。隧道开挖采用钻孔爆破法,采用上半部和下半部的形式。
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