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Reponse dynamique des structures sous charges de vent.

机译:结构在风荷载下的动态响应。

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摘要

The main purpose of this research is to assemble numerical tools that allows realistic dynamic study of structures under wind loading. The availability of such numerical tools is becoming more important for the industry, following previous experiences in structural damages after extreme wind events. The methodology of the present study involves two main steps: (i) preparing the wind loading according to its spatial and temporal correlations by using digitally generated wind or real measured wind; (ii) preparing the numerical model that captures the characteristics of the real structures and respects all the necessary numerical requirements to pursue transient dynamic analyses.;The thesis is presented as an ensemble of four articles written for refereed journals and conferences that showcase the contributions of the present study to the advancement of transient dynamic study of structures under wind loading, on the wind model itself (the first article) and on the application of the wind study on complex structures (the next three articles). The articles presented are as follows: (a) the evaluation of three-dimensional correlations of wind, an important issue for more precise prediction of wind loading for flexible and line-like structures, the results presented in this first article helps design engineers to choose a more suitable models to define three-dimensional wind loading; (b) the refinement of design for solar photovoltaic concentrator-tracker structure developed for utility scale, this study addressed concerns related strict operational criteria and fatigue under wind load for a large parabolic truss structure; (c) the study of guyed towers for TLs, the applicability of the static-equivalent method from the current industry documents for the design of this type of flexible TL support was questioned, a simplified method to improve the wind design was proposed; (d) the fundamental issue of nonlinear behaviour under extreme wind loading for single-degree-of-freedom systems is evaluated here, the use of real measured hurricane and winter storm have highlighted the possible interest of taking into account the ductility in the extreme wind loading design.;The present research project has shown the versatility of the use of the developed wind study methodology to solve concerns related to different type of complex structures. In addition, this study proposes simplified methods that are useful for practical engineers when there is the need to solve similar problems.;Key words: nonlinear, dynamic, wind, guyed tower, parabolic structure, ductility.
机译:这项研究的主要目的是组装数值工具,以便在风荷载作用下对结构进行逼真的动态研究。遵循先前在极端风灾后发生的结构破坏经验,此类数值工具的可用性对于行业变得越来越重要。本研究的方法包括两个主要步骤:(i)通过使用数字生成的风或实际测得的风,根据其时空相关性准备风荷载; (ii)准备一个能够捕捉真实结构特征并尊重所有必要数值要求的数值模型,以进行瞬态动力分析;本论文是为推荐期刊和会议撰写的四篇文章的合集,展示了本文的贡献本研究对风荷载下结构的瞬态动力研究,风模型本身(第一篇文章)以及风研究在复杂结构中的应用(下三篇文章)的进展。提出的文章如下:(a)评估风的三维相关性,这是更精确地预测柔性和线状结构的风荷载的重要问题,本第一篇文章中介绍的结果可帮助设计工程师选择定义三维风荷载的更合适模型; (b)改进了针对公用事业规模开发的太阳能光伏集中器-跟踪器结构的设计,这项研究解决了有关大型抛物架结构的严格操作标准和风荷载下疲劳的问题; (c)在研究TL的拉力塔时,有人质疑当前行业文献中的静当量法是否适用于此类柔性TL支撑的设计,并提出了一种简化的改进风能设计的方法; (d)在此评估了单自由度系统在极端风荷载下非线性行为的基本问题,使用实际测得的飓风和冬季风暴突显了考虑极端风的延性的可能兴趣加载设计。;本研究项目显示了使用发达的风研究方法来解决与不同类型的复杂结构有关的担忧的多功能性。此外,本研究提出了简化的方法,这些方法对于需要解决类似问题的实际工程师很有用。关键词:非线性,动态,风,风向,拉杆塔,抛物线结构,延性。

著录项

  • 作者

    Gani, Ferawati.;

  • 作者单位

    Universite de Sherbrooke (Canada).;

  • 授予单位 Universite de Sherbrooke (Canada).;
  • 学科 Engineering Civil.;Energy.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 247 p.
  • 总页数 247
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:45:34

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