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Ponding on light-weight flat roofs: Strength and stability

机译:在轻型平屋顶上筑墙:强度和稳定性

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Ponding on flat or nearly flat roofs keeps drawing attention due to the large number of collapses over the course of years. Though at present computer programs start to offer functionality to check the sensitivity of roofs for water accumulation, true insight appears to be missing on the very nature of the phenomenon. In this paper two models are presented for regular grids, that fill the understanding gap: the piston-spring model for rather stiff roofs and the bar-spring model for extremely flexible ones. The models apply for horizontal roofs, sloped roofs, roofs with initial deflection due to permanent load, camber and composed roofs. Rain showers are considered, so heavy that the water level keeps staying at the specified height of the emergency discharge (full ponding). The case of a specified limited water volume (partial ponding) is not considered. Full ponding is studied for both fully filled roofs and partially filled roofs. The derived theory brings to light that two main roof categories exist; one stress-dominated and one stability-dominated. Four application examples demonstrate that the models are easy-to-use design tools for structural engineers. The derived theory clarifies the effect of the profiled steel roof sheeting on safety and other practical hints are included in the paper.
机译:平坦或几乎平坦的屋顶上的池塘由于多年来的大量倒塌而备受关注。尽管目前计算机程序开始提供检查屋顶对积水敏感性的功能,但是对于这种现象的本质似乎缺乏真正的见识。在本文中,提出了两种用于规则网格的模型,这些模型填补了理解上的空白:用于较硬屋顶的活塞弹簧模型和用于极度柔性屋顶的杆弹簧模型。该模型适用于水平屋顶,倾斜屋顶,由于永久载荷而产生初始挠度的屋顶,外倾角和组合屋顶。考虑到阵雨,水是如此之重,以至于水位一直保持在紧急排放的指定高度(满池)。不考虑规定的有限水量(部分积水)的情况。对于完全填满的屋顶和部分填满的屋顶,都进行了充分注水的研究。派生的理论揭示出存在两个主要的屋顶类别。一种是压力为主,另一种是稳定性。四个应用示例证明,该模型是结构工程师易于使用的设计工具。派生的理论阐明了型钢屋顶板对安全性的影响,并且本文还包括其他实用提示。

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