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The impact of extreme wind events on structures.

机译:极端风事件对结构的影响。

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摘要

Severe wind storm events, categorized as events which inflict a significant amount of damage as a result of wind, are difficult to both simulate and quantify with an acceptable degree of confidence. This experimental work focuses on the development of multiple simulation frameworks to simulate salient features of severe wind events and to assess their load effects on prismatic scale models.;Thunderstorm generated gust fronts, and associated downbursts, constitute various extreme wind events which cause significant damage to life and property. Particularly vulnerable are low to high-rise buildings, transmission lines, industrial structures, wind turbines and possibly long span bridges. Similarly, larger scale severe wind events (i.e. hurricanes) have a more pronounced direct impact on urban environments as well, producing damaging flow environments in special cases as a result of various situational factors. Understanding the interaction between the built environment and these extreme events is critical to the design of structures, ensuring their resilience to these hazards for post-event functionality and the safety of occupants.;In order to assess the impact these severe events have on structures, novel experimental approaches are developed to simulate the various features of these severe events. Downburst outflows and gust fronts are simulated using three techniques: (i) a flat plate which can be oriented to a high incidence to the oncoming flow in a wind tunnel, (ii) a computational model of a rotating flat plate within a numerical wind tunnel and (iii) a novel facility that uses multiple small fans to tailor the oncoming flow within a wind tunnel (through a collaborative effort with Miyazaki University and the Center of Excellence on Wind Effects in Urban Areas at Tokyo Polytechnic University). A severe wind flow environment within an urban setting is developed utilizing a computational domain, with both flow visualization and wind tunnel modeling, to assess attendant damage patterns caused by the flow field on the built environment, particularly to cladding and facades.;Prismatic models are subjected to the simulated flow fields, capturing the resulting surface pressures. These pressure results are then analyzed and compared with characteristics developed in response to synoptic boundary layer flow fields. The data is examined using a host of time, frequency and time-frequency based analysis techniques, delineating salient features in the transient flow fields that may depart from those observed in the typical synoptic boundary layer winds.;The results presented herein demonstrate that simple, prismatic structures experience significant changes in the resulting surface pressures when impacted by a gust front-like flow. Surface pressures show a marked increase/decrease in coefficient values, beyond those developed in boundary layer flow fields. The spectral description of the local pressure fluctuations and integral loads demonstrate differing behaviors based on the length of the storm event. Time-frequency wavelet scalograms highlight temporal variations in the frequency content in response to the oncoming flow field. The computational model of an urban environment subjected to a severe wind event reveals various features within the developed flow field, resulting from multiple factors, that enhance surface pressures and facilitate debris impacts which yield detrimental effects on the building facade and exterior glass.;The results of these investigations serve to examine and delineate whether the effects of gust front outflows and other severe wind events are indeed captured by the simulation techniques provided herein, to assess the impacts of severe events on structures based on the experimental results in this study, and to fundamentally contribute to the general body of transient aerodynamics knowledge base.
机译:严重的暴风雨事件被归类为由于风而造成重大损害的事件,很难以可接受的置信度来模拟和量化。这项实验工作着重于开发多种模拟框架,以模拟强风事件的显着特征并评估其在棱柱尺度模型上的负载影响。;雷暴产生的阵风锋面和相关的暴发,构成了各种极端风事件,这些事件严重破坏了生命和财产。特别脆弱的是低矮的高层建筑,输电线路,工业结构,风力涡轮机以及可能的大跨度桥梁。同样,大规模的强风事件(即飓风)对城市环境也有更明显的直接影响,在特殊情况下,由于各种情况因素,会产生破坏性的流动环境。了解建筑环境与这些极端事件之间的相互作用对于结构设计至关重要,从而确保其对事件后功能和乘员安全的这些危害具有弹性。;为了评估这些严重事件对结构的影响,开发了新颖的实验方法来模拟这些严重事件的各种特征。使用三种技术来模拟下突流和阵风锋面:(i)可以定向成对风洞中即将到来的气流具有高入射角的平板;(ii)在数值风洞中旋转的平板的计算模型(iii)一种新颖的设施,该设施使用多个小型风扇来调整风洞中迎面而来的气流(通过与宫崎大学和东京工业大学城市风效应卓越中心的共同努力)。利用计算域开发了城市环境中的严酷风流环境,并同时进行了流量可视化和风洞建模,以评估由建筑环境中的流场引起的伴随破坏模式,特别是对立面和立面的破坏模式。在模拟流场作用下,捕获所得的表面压力。然后分析这些压力结果,并将其与响应天气边界层流场形成的特征进行比较。使用大量基于时间,频率和时频的分析技术对数据进行了检查,描绘出瞬态流场中的显着特征,这些显着特征可能与典型的天气边界层风中所观察到的特征有所不同。当受到阵风前流的影响时,棱柱形结构的表面压力会发生显着变化。表面压力显示出系数值的显着增加/减小,超过了边界层流场中产生的那些。局部压力波动和积分载荷的频谱描述表明,基于风暴事件的长度,行为有所不同。时频小波比例尺图突出显示了响应于即将到来的流场时频率含量的时间变化。遭受强风事件影响的城市环境的计算模型揭示了由多种因素引起的发达流场内的各种特征,这些特征会增加表面压力并促进碎屑撞击,从而对建筑物的外墙和外墙玻璃产生不利影响。这些调查中的一项用于检查和描述阵风锋面外流和其他严重风事件的影响是否确实通过本文提供的模拟技术捕获,基于本研究的实验结果评估严重事件对结构的影响,并从根本上为瞬态空气动力学的一般知识基础做出贡献。

著录项

  • 作者

    Butler, Kyle H.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 322 p.
  • 总页数 322
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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