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首页> 外文期刊>Tunnelling and underground space technology >Study on the effect of a new construction method for a large span metro underground station in Tabriz-Iran
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Study on the effect of a new construction method for a large span metro underground station in Tabriz-Iran

机译:大不里士-伊朗大跨度地铁地下车站施工新方法效果研究

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摘要

A method for construction of large underground spaces based on a new pre-supporting system is introduced. In this paper Mansour Station, in Line 1 of Tabriz Metro (Tabriz Urban Railway Organization, TURO); Iran has been studied using this method. Mansour Station have some special characteristics such as shallow depth, soft surrounding soil, wide span and heavy street traffic, thus requires a method of underground construction that can control the stability of the underground space and the ground settlement. This method includes a pre-supporting system that is called Concrete Arch Pre-supporting System (CAPS). Construction of CAPS is mainly based on construction method of old Iranian small water tunnels, Quanat, which is generally fast and more economical than usual methods such as forepoling. CAPS is a rib like underground structure consists of concrete piles and arch beams constructed around a proposed underground space prior to its constructions. This method has been utilized in several underground stations in Tehran Metro since 2002 and can be used for any large span underground spaces in similar ground conditions. Numerical modeling is used to simulate all the construction stages and analyze the ground behavior. The results of the modeling show that CAPS reduces the ground surface settlement and enhances the ground stability. Dimension of arch beams and their spacing has also notable effect on the ground deformation.
机译:介绍了一种基于新的预支撑系统的大型地下空间施工方法。本文是大不里士地铁1号线(Tabriz城市铁路组织,TURO)的Mansour站;已经使用这种方法对伊朗进行了研究。曼苏尔站具有浅层深度,周围土壤柔软,跨度大和街道交通繁忙等一些特殊特征,因此需要一种能够控制地下空间和地面沉降稳定性的地下建筑方法。此方法包括一个预支撑系统,称为混凝土拱门预支撑系统(CAPS)。 CAPS的建设主要基于伊朗古老的小型水隧道Quanat的建设方法,该方法通常比常规方法(如推土法)更快且更经济。 CAPS是一种肋骨状的地下结构,由混凝土桩和拱形梁组成,在建造之前先围绕拟议的地下空间建造。自2002年以来,该方法已在德黑兰地铁的多个地下站中使用,可用于相似地面条件下的任何大跨度地下空间。数值建模用于模拟所有施工阶段并分析地面行为。建模结果表明,CAPS减少了地面沉降,增强了地面稳定性。拱形梁的尺寸及其间距对地面变形也有显着影响。

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