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Dynamic response of structures to thunderstorm outflows: Response spectrum technique vs time-domain analysis

机译:结构对雷暴潮的动态响应:响应谱技术与时域分析

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摘要

Thunderstorms are transient events. Design wind velocity and wind-induced damage are often related to them. Despite this, research on thunderstorm loading of structures is still fragmentary and uncertain due to their complexity, short duration and small size. These issues make it difficult to set physically realistic and simple models as well as to gather real data. This favoured the implementation of refined methods based on limited measurements. The European Projects "Wind and Ports" and "Wind, Ports and Sea" realised an extensive monitoring network from which many thunderstorm outflow records were extracted. They were analysed to inspect their characteristics and to formulate methods coherent with measurements. Firstly, the response spectrum technique conceived for earthquakes was extended to thunderstorms. Then, a hybrid simulation strategy was proposed and time-domain integrations of the structural response were applied. This paper provides a joint calibration and advancement of these two methods, leading to results that substantially agree, especially faced with their conceptual and operative diversities. This confirms the potential of the response spectrum technique to become a suitable tool for calculating the thunderstorm loading of structures and the efficiency of hybrid simulations and time-domain analyses to investigate, with a limited computational burden, advanced structural issues.
机译:雷暴是短暂事件。设计风速和风致破坏通常与它们有关。尽管如此,由于结构的复杂性,持续时间短和尺寸小,关于雷暴荷载的研究仍然是零碎的和不确定的。这些问题使得难以设置物理上现实的和简单的模型以及收集真实数据。这有利于实施基于有限测量的改进方法。欧洲项目“风与港口”和“风,港口与海”实现了一个广泛的监控网络,从中提取了许多雷暴流出记录。对它们进行了分析,以检查其特性并制定与测量相一致的方法。首先,为地震设想的响应频谱技术扩展到了雷暴。然后,提出了一种混合仿真策略,并进行了结构响应的时域积分。本文对这两种方法进行了联合校准和改进,得出的结果基本上是一致的,尤其是面对它们在概念和操作上的多样性。这证实了响应谱技术有可能成为计算结构的雷暴荷载以及混合仿真和时域分析效率的合适工具,以有限的计算量研究高级结构问题。

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