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Imagery-Based Wind Damage Functions

机译:基于图像的风力损伤功能

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Prediction or estimation of wind damage to individual structures using analytical techniques is time-consuming, costly, and often limited by unknown loading factors and structural resistances. Detailed analysis of all individual structures affected by hurricanes or large tornadoes is typically not feasible. Alternatively, wind damage functions (WDFs) for structural components and/or overall systems based on the observation of damages distributed spatially across a known wind field can serve as a significant tool for the estimation or prediction of wind-induced damages.The intensity and spatial distribution of maximum wind speeds in severe wind storms have historically been unknown, and the collection of area-wide and comprehensive damage data via ground surveys has generally proved impossible. However, it is now possible to construct improved wind damage functions based on high-resolution post-storm imagery by correlating observed damage levels and known wind speeds established through the merger of significant new technological developments, including: portable ruggedized instruments that measure wind speeds in-situ, numerical modeling techniques that produce regional velocity fields from available multi-platform measurements, remote-sensing platforms that facilitate the rapid capture and preservation of damage data, and interpretation techniques that aid in identifying levels of wind damage depicted in these remote-sensing data.
机译:使用分析技术对各个结构对个体结构的预测或估计是耗时,昂贵的,并且通常受到未知的装载因子和结构电阻的限制。对受飓风或大龙卷风影响的所有个体结构的详细分析通常是不可行的。或者,基于在已知风场的空间分布的损伤观察的结构部件和/或整体系统的风损函数(WDF)可以作为估计或预测风引起的损伤的重要工具。强度和空间严重风暴中的最大风速分布历史上未知,通过地面调查的区域和全面损坏数据的收集通常证明是不可能的。然而,现在可以通过关联观察到的损伤水平和通过重大新技术发展的合并建立的损伤水平和已知的风速来构建改进的风损伤功能,包括:测量风速的便携式粗糙化仪器-situ,从可用的多平台测量中产生区域速度场的数值建模技术,遥感平台,便于快速捕获和保存损坏数据,以及有助于识别这些遥感中所描绘的风损水平的解释技术数据。

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