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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Detection, simulation, modelling and loading of thunderstorm outflows to design wind-safer and cost-efficient structures
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Detection, simulation, modelling and loading of thunderstorm outflows to design wind-safer and cost-efficient structures

机译:雷暴外流的检测,仿真,建模和装载,设计风更安全和成本效益的结构

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摘要

Wind actions are crucial for the safety and sustainability of structures. The wind climate of Europe and many other parts of the world is dominated by synoptic extra-tropical cyclones and mesoscale thunderstorms. Thunderstorms are frequent events that cause wind speeds and damage often greater than those of cyclones. This paper describes a wide research activity including an extensive monitoring network, an unprecedented database of transient wind speed recordings, a broad spectrum of numerical tools for elaborating data and extracting their statistical properties relevant to the wind loading of structures, the development of wind tunnel tests and CFD simulations, investigations on weather scenarios and damage surveys aiming to complete the information provided by field measurements. Based on these resources, a new generation of wind loading models is being developed - response spectrum technique, time-domain integration, evolutionary spectral density - robustly coherent with measured data and intrinsically coherent with each other. These studies are being carried out in the framework of the project THUNDERR, funded by the European Research Council (ERC) with an Advanced Grant 2016 in order to produce outcomes physically correct, transferable to design and standards, suitable to modify the current wind loading format and make constructions wind-safer and cost-efficient.
机译:风行动对于建筑物的安全和可持续性至关重要。欧洲的风化和世界许多其他地区都是由天气额外热带旋风和Mescle雷暴的主导。雷暴是频繁的事件,导致风速和损坏通常大于旋风。本文介绍了广泛的研究活动,包括广泛的监控网络,一个前所未有的瞬态风速记录数据库,广泛的数字工具,用于详细说明数据,提取与结构风荷载有关的统计性质,风洞测试的发展和CFD模拟,对天气场景的调查和损害调查,旨在完成现场测量提供的信息。基于这些资源,正在开发新一代风装模型 - 响应频谱技术,时域集成,进化谱密度 - 鲁棒地相干,测量数据和彼此本质上相干。这些研究是在项目雷德尔的框架内进行的,由欧洲研究委员会(ERC)提供高级授予2016年,以便生产物理上正确,可转让的设计和标准的结果,适合修改当前风装的格式并使建筑风安全和成本效益。

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