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Prediction of extent of damage to metal roof panels under hail impact

机译:冰雹冲击下金属屋顶板损坏程度的预测

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In the event of a hailstorm, several stakeholders, such as home and business owners, as well as insurance companies, are in immediate need to make a decision on repair or replacement of roofs based on their extent of damage. The body of knowledge on the structural response of roofs to hail impact is, however, limited, and as a result, the current roof design and assessment criteria suffer from the absence of a fundamental understanding of the extent of damage under region-specific hail hazards. To address this gap, the current study investigates the hail impact on metal roof panels that are commonly used in residential and commercial buildings. For this purpose, a set of finite-element (FE) impact simulations are conducted. The FE models of the hail developed for this study are first validated with the experimental test data. Hail impact simulations are then performed to assess the vulnerability of critical roof sections subjected to a range of hail diameters. For performance assessment, several measures, including visual damage, as well as displacements, strains, and stresses, are employed. The investigations are then extended to study a chain of hail impacts, which replicate the hailstorm events experienced by roofs in reality. In the first hail impact, the metal roof panels are found to undergo plastic deformations for hail diameters greater than 76.2 mm (3.0 in.). This increases the extent of damage to metal roof panels subjected to subsequent hailstones of the same size by up to 20%. The outcome of this study is expected to provide building, construction, and insurance industries with a fundamental insight necessary for condition assessment purposes. This is deemed a critical input to prevent the failure of metal roofs under hail impact.
机译:万一发生冰雹,房屋和企业所有者以及保险公司等一些利益相关者立即需要根据损坏程度决定维修或更换屋顶。然而,有关屋顶对冰雹影响的结构响应的知识体系有限,因此,当前的屋顶设计和评估标准缺乏对特定地区冰雹危害下破坏程度的基本了解。 。为了弥补这一差距,当前的研究调查了冰雹对住宅和商业建筑中常用的金属屋顶板的影响。为此,进行了一组有限元(FE)冲击模拟。首先使用实验测试数据验证了为该研究开发的冰雹的有限元模型。然后进行冰雹冲击模拟,以评估受到一定冰雹直径影响的关键屋顶部分的脆弱性。为了评估性能,采用了多种措施,包括视觉损伤以及位移,应变和应力。然后将调查范围扩展到研究一系列冰雹影响,这些冰雹影响复制了实际屋顶遇到的冰雹事件。在第一次冰雹冲击中,发现金属屋顶面板承受的冰雹直径大于76.2毫米(3.0英寸)时会发生塑性变形。这使遭受相同尺寸随后冰雹的金属屋顶面板的损坏程度增加了多达20%。预期该研究的结果将为建筑,建筑和保险行业提供状况评估目的所必需的基本见识。这被认为是防止金属屋顶在冰雹冲击下失效的关键输入。

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