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Optimum Design of a Shallow-Buried Urban Metro Station Using the Diaphragm Wall Construction Method

机译:地下连续墙浅埋法优化设计。

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With progress in the field of civil construction projects especially in geotechnic projects, various construction methods have been introduced to fulfill project purposes. Underground structures and deep excavations, as essential part of construction of main structure, are also of advancing projects. Applying various construction methods is contingent on the possibility of achieving a suitable and correct design method. In some cases it is needed to combine different construction methods to reach a suitable design. This article studies a three-storey shallow-buried urban metro station using diaphragm wall construction method. Some of the challenges in this study are the slab-wall connection type and the geometry of the bottom slab (foundation), as a flat or arch slab, and concluding an optimum design. In this study the analysis is based on finite element method. In a similar state of slab-wall connection the structure is analyzed under two conditions: flat and arch bottom slab; and analysis results are compared and contrasted. The internal forces and moments in the structural members are then compared in static and seismic analysis. By studying the analysis results, slab geometry and connection type are chosen according to the internal forces and structural behavior. The analysis showed that in the structure with arch bottom slab the internal forces (moment and shear) in the wall especially in the first floor are greater compared to that of the structure with flat bottom slab. Moreover, the analyses and study of connection types indicted that the optimum design is reached when the connection of floor slabs to the wall is of fixed type and the connection of invert to the wall are pinned.
机译:随着民用建筑项目领域尤其是岩土工程领域的进步,已经引入了各种建筑方法来实现项目目的。作为主体结构施工必不可少的一部分,地下结构和深基坑工程也在推进中。应用各种构造方法取决于获得合适且正确的设计方法的可能性。在某些情况下,需要组合不同的构造方法以达到合适的设计。本文采用隔墙施工方法研究了一座三层浅埋城市地铁站。本研究中的一些挑战是平板-墙的连接类型和底部平板(基础)的几何形状(平板或拱形平板)以及如何进行最佳设计。在这项研究中,分析是基于有限元方法的。在相似的墙板-墙连接状态下,在两种条件下对结构进行分析:平板和拱底板;分析结果进行比较和对比。然后在静力和地震分析中比较结构构件中的内力和力矩。通过研究分析结果,根据内力和结构特性选择板的几何形状和连接类型。分析表明,在具有拱形底部平板的结构中,与具有平坦底部平板的结构相比,墙中的内力(弯矩和剪力)更大,尤其是在一楼。此外,对连接类型的分析和研究表明,当楼板到墙壁的连接是固定类型并且倒置到墙壁的连接被钉扎时,可以达到最佳设计。

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