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A hybrid solution proposal for precast tunnel segments

机译:预制隧道段的混合解决方案提案

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摘要

The construction of underground structures is playing a relevant role in modern society. As a result of noticeable tunnel boring machine (TBM) evolution, mechanized excavation methods are gaining increased market shares. TBM driven tunnels are generally used in combination with precast concrete segments as the main support system for reducing or minimizing surface disturbances during construction and to fulfill the project requirements with regards to quality, construction times, budget and safety. Within this framework optimization approaches strongly focused on these process parameters, rather than the general structural performance of the segments. However, improving the performance by using conventional reinforcement, High Performance Fiber Reinforced Concretes (HPFRCs) or a combination of such enables a possible reduction of the lining thickness or the amount of reinforcement. To this aim, this paper presents a new hybrid solution for precast tunnel segments with a reduced thickness, which leads to new perspectives in reducing the total amount of concrete, in decreasing the volume of disposal materials from the boring process as well as to minimize the TBM size. A parametric numerical study is developed for evaluating the effectiveness of proposed hybrid solution. The latter is based on high strength reinforced concrete in combination with HPFRC at the longitudinal joints, whose geometric configuration is properly modified to maximize the segment's bearing capacity.
机译:地下结构的建设在现代社会中发挥了相关作用。由于隧道钻孔机(TBM)演化的结果,机械化挖掘方法正在增加市场份额。 TBM驱动隧道通常与预制混凝土段相结合,作为主要支撑系统,用于在施工期间减少或最小化表面干扰,并满足质量,施工时间,预算和安全性的项目要求。在此框架内,优化方法强烈关注这些过程参数,而不是段的一般结构性能。然而,通过使用常规增强材料,高性能纤维增强混凝土(HPFRC)或这样的组合来改善性能,这使得可能降低衬里厚度或加强量的可能降低。为此目的,本文提出了一种新的混合隧道段,用于厚度减小的预制隧道区段,这导致了降低混凝土总量的新视角,从而减少了钻孔过程的处理材料的体积以及最小化TBM尺寸。开发了参数数值研究,用于评估提出的杂化解决方案的有效性。后者基于高强度钢筋混凝土与纵向接头的HPFRC组合,其几何构造被适当地修改,以最大化段的承载力。

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