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The ponding problem on flat steel roof grids

机译:扁钢屋顶格栅上的沉思问题

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Due to several reasons, a flat steel roof grid of industrial or commercial single-story buildings may be very flexible in the vertical direction. Due to its flexibility, a ponding effect can take place. The rainwater fills the space created by vertical deflection of the roof grid and this space increases under the gradually accumulated rainwater until equilibrium is reached. Ponding may be full or partial, and it is a self exciting phenomenon that can lead to grid instability. The problem is strongly non-linear, since the rainwater distribution on the roof grid in not known a priori. A closed form response to particular ponding cases and a simple grid geometry is achieved. Moreover, a non-linear finite element technique is presented in order to study the small/large deflection solution to the ponding problem of a complex flat steel roof grid. Finally, several steel roof grids are examined in order to illustrate the effect of precambering, grid dimensions and vertical flexibility on the ponding effect. The practical significance of a large deflection analysis for practical situations is also elucidated.
机译:由于多种原因,工业或商业单层建筑物的扁平钢屋顶格栅在垂直方向上可能非常灵活。由于其灵活性,可以产生深思熟虑的效果。雨水充满了由屋顶格栅的垂直偏转所形成的空间,并且该空间在逐渐积累的雨水下逐渐增加,直到达到平衡为止。填充可能是全部或部分,这是一种自激现象,可能导致电网不稳定。这个问题是非常非线性的,因为先验未知的雨水在屋顶格栅上的分布。实现了对特定积水情况的封闭形式响应和简单的网格几何形状。此外,提出了一种非线性有限元技术,以研究复杂平板钢屋顶格栅的沉陷问题的小/大挠度解。最后,检查了几个钢质屋顶格栅,以说明预拱形,格栅尺寸和垂直挠度对筑墙效果的影响。还阐明了大挠度分析对于实际情况的实际意义。

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