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Investigation of buckled truss bars of a space truss roof system

机译:空间桁架屋顶系统弯曲桁架杆的调查

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Some bars of space truss roof a major shopping market chain in Adana, Turkey have experienced flexural buckling without any circumstance of overloading induced by snow and rain together with wind that has led to the buckling phenomenon. However, according to the on-site geo-technical surveys that have demonstrated that an increase in consolidation settlement of foundation soil has occurred, it has been realized that differential support settlements may cause the truss bars to buckle. This paper investigates the probable cause of the buckling phenomenon observed in some truss bars based on the soil condition. For this, a photogrammetric survey has initially been performed to determine the existing vertical position of the roof supports located on the top of the cantilever columns. To obtain the amount of settlements of the supports, initial vertical coordinates of the tips of the columns that were determined before assembling of the roof are subtracted from those obtained by the photogrammetric measurement with respect to the reference point. An observation has also been made in site to visually inspect the distribution pattern of the buckled truss bars. A 3D analytical model of the roof has been developed to understand whether or not the buckling failure of the truss bars is resulted from the soil settlement under the individual foundations. When the observed distribution pattern of the buckled truss bars is compared to that obtained by the nonlinear analysis, a reasonably good agreement has been achieved, which shows that the truss bars have buckled because of the effects caused by differential settlements among the individual foundations due to increase in consolidation settlement occurred within the soil that surrounds the structure.
机译:一些空间桁架屋顶是Adana的主要购物市场连锁店,土耳其经历了弯曲弯曲,没有任何通过雪和雨与导致屈曲现象的风引起的过载的情况。然而,根据现场的地质技术调查,已经证明了基础土壤的整合沉降的增加,已经意识到差动支撑沉降可能导致桁架杆扣。本文根据土壤条件研究了一些桁架杆中观察到的屈曲现象的可能原因。为此,首先已经进行了摄影测量测量,以确定位于悬臂柱顶部的顶部支架的现有垂直位置。为了获得支撑件的沉降量,从通过摄影测量相对于参考点的摄影测量获得的那些减去在组装屋顶之前确定的柱的初始垂直坐标。在现场也进行了观察,以在目视检查弯曲桁架杆的分布模式。已经开发了屋顶的3D分析模型,以了解桁架杆的屈曲失效是由各个基础下的土壤沉降产生的。当屈曲桁架条的观察到的分布图案与由非线性分析所获得的那样进行比较时,已经实现了合理良好的一致性,这表明桁架杆由于由于各个基础所致的差异沉降造成的效果而弯曲围绕结构的土壤中发生整合沉降的增加。

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