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Numerical modelling of 16 m deep underground structure

机译:16米深地下结构的数值模型

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In the past period a rapid building expansion in the city centre of Skopje has been witnessed. In most cases the structures are small administrative buildings which do not exceed 1500 m~2. The relatively small construction sites together with the problem of parking had forced the investors to use the underground. The deep excavation in particular, when greater depths are considered in built-up surrounding has proved to be a formidable engineering task. This paper briefly presents the numerical modelling process of 16 m deep underground structure with five underground floors on the narrow site (11.5 × 27.6 m) next to two existing buildings and a very frequent boulevard which leads to main City square. The proposed technical solution has been compelled by the restricted space available for construction and the settlement of the adjacent buildings. The excavation at all times will be secured by a diaphragm wall and top to down method of construction. In order to describe the effects of underground construction and excavation in top to down manner a numerical model described by finite element method has been used. Several calculations had been performed with different detailing level in order to obtain more realistic simulation of the soil-structure interaction in all stages of construction. The top to down method of construction in combination with diaphragm wall has many advantages but most important is that allows an underground construction in build-up areas where the depth is not a restricting factor. The computation of such system although numerically relatively cheap it has to be followed by detailed analysis for assessment of the influence from different loading situations and material behaviour. Finally, proposed retaining system looks for experience contractors and skilled workers with specific detailing and prefabrication of the elements. Beside the technical also the economic aspects are in favour of the proposed structure indicating a very cost effective solution.
机译:在过去的期间,斯科普里的市中心的快速建设扩张已经见证。在大多数情况下,结构是不超过1500米〜2的小型行政建筑。相对小的建筑工地与停车问题一起迫使投资者使用地下。特别是在建立周围考虑更大深度的深度的深度挖掘已经证明是一个强大的工程任务。本文简要介绍了16米深层地下结构的数值建模过程,狭窄的部位上有五个地下地板(11.5×27.6米)旁边的两个现有建筑物和一个非常频繁的大道,导致主城市广场。所提出的技术解决方案被可用于建筑的限制空间和相邻建筑物的结算。始终将通过隔膜墙和顶部施工来保护挖掘。为了描述地下施工和挖掘在顶部到下的方式的影响,已经使用了有限元方法描述的数值模型。通过不同的细节水平进行了几种计算,以便在构造的所有阶段获得的土壤结构相互作用的更现实模拟。与隔膜墙相结合的施工顶部具有许多优点,但最重要的是,允许深度不是限制因素的建筑区域中的地下施工。这种系统的计算虽然数值相对便宜,但必须进行详细分析,以评估不同负载情况和材料行为的影响。最后,拟议的保留制度寻找经历承包商和技术工人,具有特定的细节和预制的元素。除了技术方面,经济方面还支持所提出的结构,表明效果非常有效。

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