Substantiation of the Escalator Tunnel Construction Technology Based on the Results of Field Research

S. Bielikova, O. Tiutkin
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Abstract

Purpose. The authors aim to substantiate a new technology for the construction of an escalator tunnel in Ukraine based on the results of field studies performed as part of surveying measurements during the construction of the inclined run of the Dnipro metro. Methodology. The article analyzes the main technology of the escalator tunnel construction, which was based on the development of an inclined working from top to bottom with preliminary preparation of the massif by means of artificial soil freezing. Several cases of application of the bottom-up escalator tunnel construction method using the New Austrian Tunneling Method (NATM), which is successfully used in metro of other countries, are considered. The main principle of the method is that a shotcrete system is used as a temporary (primary) support, and a reinforcement system with monolithic concrete is used as a permanent support. Findings. The authors analyzed the peculiarities of the escalator tunnel excavation of the Dnipro metro by the Turkish company «Limak» in 2017–2018. It was noted that the excavation was carried out from the bottom up in conditions of strong rock (plagiogranite) using drilling and blasting operations. The characteristic results of field studies during drilling and blasting operations in the process of developing the calotte are analyzed. On the basis of these data, it is possible to trace the tendency to the appearance of minor overburden during sinking. The value of the deformed state (displacement of the contour of the designed casing) is within the normative limits, which indicates the effective use of these works within the framework of NATM. It is proved that in the conditions of military operations, the technology of building an escalator tunnel from the bottom up is a guarantee of the safety of workers and equipment. Originality. The results of the scientific work presented in the article make it possible to determine the level of deformed state during the excavation of the escalator tunnel of the Dnipro metro in hard rocks. During the field studies, the dependences of deformation of plagiogranite in the inclined bore were obtained. Practical value. An alternative technology for the construction of a bottom-up escalator tunnel based on NATM with the provision of normative deformation of the surrounding rock mass is substantiated.
基于实地研究成果的自动扶梯隧道施工技术论证
目的。作者旨在根据在第聂伯罗地铁斜轨施工期间作为勘测测量一部分进行的实地研究结果,证实在乌克兰建造自动扶梯隧道的新技术。方法论。文章分析了自动扶梯隧道施工的主要技术,其基础是自上而下的倾斜施工,并通过人工土壤冻结对地块进行初步准备。文章考虑了使用新奥地利隧道法(NATM)的自下而上自动扶梯隧道施工方法的几个应用案例,该方法已在其他国家的地铁中成功应用。该方法的主要原理是使用喷射混凝土系统作为临时(主要)支护,使用整体混凝土加固系统作为永久支护。研究结果作者分析了 2017-2018 年土耳其 "Limak "公司在第聂伯罗地铁自动扶梯隧道挖掘工程中的特殊性。结果表明,挖掘工作是在坚硬岩石(长花岗岩)条件下,利用钻孔和爆破作业自下而上进行的。在开发卡洛提特的过程中,对钻探和爆破作业期间实地研究的特征结果进行了分析。在这些数据的基础上,可追溯到下沉过程中出现小覆盖层的趋势。变形状态值(设计套管轮廓的位移)在标准范围内,这表明这些工程在 NATM 框架内得到了有效利用。事实证明,在军事行动条件下,自下而上建造自动扶梯隧道的技术是工人和设备安全的保证。独创性。文章中介绍的科研成果可以确定在坚硬岩石中挖掘第聂伯罗地铁自动扶梯隧道时的变形程度。在实地研究过程中,获得了斜孔中斜长花岗岩变形的相关性。实用价值。基于 NATM 的自下而上自动扶梯隧道施工替代技术,以及周围岩体的规范变形得到了证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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