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Geotechnical investigations and preliminary support design for the Gecilmez tunnel: A case study along the Black Sea coastal highway, Giresun, northern Turkey

机译:Gecilmez隧道的岩土工程调查和初步支护设计:以土耳其北部吉雷松的黑海沿岸公路为例

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This study encompasses geotechnical investigations, stability assessments and design of the preliminary support systems for the Gecjlmez tunnel which is constructed in Giresun for the improvement of the highway along the Black Sea coast. During the study, a detailed geological map of the study area was prepared and the geotechnical characteristics of the rock masses were determined. The rock mass classification of the tunnel grounds was performed by utilizing the RMR method, Q system, NATM and the Geological Strength Index (GSI) classification which was followed by performing a geotechnical investigation along the tunnel grounds in order to obtain the geotechnical parameters for the stability analyses of the portals and of the tunnel. Lugeon (water pressure) tests were performed in order to determine the permeability of the rock mass along the tunnel. The appropriate geotechnical parameters were utilized in order to perform rock slope stability kinematic and limit equilibrium analyses at the portals of the tunnel. Empirical preliminary tunnel support systems according to the RMR method, Q-system and NATM were determined. The structurally controlled instabilities within the tunnel sections were identified and the required preliminary tunnel support systems were determined to overcome these instabilities. Regarding the structurally controlled rock failures along the probable weak zones and lineaments (i.e., inactive probable faults or shear zones) during tunneling, wedge stability analysis was utilized to determine the potential wedge failures that could possibly occur during tunneling and to apply the necessary support systems for stabilizing any wedge failure in the tunnel. The induced stress distributions and deformations in the rock mass surrounding the tunnel grounds was investigated and the interaction of the support systems with the rock mass was analyzed by using numerical (finite element) modeling. In the finite element analyses it was assumed that the rock mass behaved as a fractured rock mass since the tunnel grounds were moderate to highly jointed. The objective of the numerical modeling was to check the validity of the empirical preliminary tunnel support requirements and also to compare the results with those obtained through assuming structurally controlled failures during tunneling. The performance of the preliminary tunnel support was also validated on the basis of thrust-moment interaction analyses. The results of the structurally controlled failure analyses, numerical analyses and thrust-moment analyses were compared in an attempt to determine the preliminary tunnel support systems to stabilize the Gecilmez tunnel.
机译:这项研究包括岩土工程研究,稳定性评估以及为在黑海沿岸改善高速公路而在吉雷松建造的Gecjlmez隧道的初步支护系统的设计。在研究过程中,准备了研究区域的详细地质图,并确定了岩体的岩土特征。隧道地基的岩体分类是通过使用RMR方法,Q系统,NATM和地质强度指数(GSI)分类进行的,随后对隧道地基进行岩土工程研究,以获得岩土工程的岩土参数。门户和隧道的稳定性分析。进行了Lugeon(水压)测试,以确定沿隧道的岩体渗透率。利用适当的岩土工程参数来进行隧道边坡稳定性运动学分析和极限平衡分析。根据RMR方法,Q系统和NATM确定了经验性的初步隧道支护系统。确定了隧道段内结构受控的不稳定性,并确定了所需的初步隧道支撑系统以克服这些不稳定性。关于在隧道掘进过程中沿可能的薄弱区域和构造(即非活动性可能的断层或剪切带)进行结构控制的岩石破坏,利用楔形稳定性分析来确定在隧道掘进过程中可能发生的潜在楔形破坏,并应用必要的支撑系统用于稳定隧道中的任何楔形破坏。研究了隧道地面周围岩体中的诱发应力分布和变形,并通过数值(有限元)建模分析了支撑系统与岩体的相互作用。在有限元分析中,由于隧道地面为中等至高度节理,因此假定岩体表现为裂隙岩体。数值模拟的目的是检查经验性初步隧道支护要求的有效性,并将结果与​​假定隧道施工过程中受结构控制的破坏所获得的结果进行比较。在推力-弯矩相互作用分析的基础上,还验证了初步隧道支护的性能。比较了结构控制失效分析,数值分析和推力矩分析的结果,以试图确定初步的隧道支撑系统以稳定Gecilmez隧道。

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