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Closed-Form Prediction of the Alongwind-lnduced Fatigue of Structures

机译:顺风引起的结构疲劳的闭合形式预测

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摘要

Wind-induced fatigue is a crucial topic in the design of wind-sensitive structures. Despite this, methods proposed in literature are mainly addressed to research, or they are too simplified for engineering applications. Thus, suitable engineering and standards procedures are almost totally lacking, which is a major shortcoming in structural and wind engineering. Starting from a closed-form solution (CFS) recently proposed by the authors, this paper develops a novel engineering approach to evaluate the alongwind-induced fatigue of structures and structural elements. This approach is based on a hierarchy of hypotheses that lead to a progressive simplification of the basic formulation. Two classes of formulas, referred to as Levels I and II CFSs, are obtained and critically discussed with special concern for input parameters. Level I CFS implies three further simplifications joined together by the common aim of providing refined approximations of the reference target solution. Level II CFS implies three different simplifications joined together by the common aim of providing easy solutions on the safe side. This set of CFSs is framed within a general procedure that any country, society, or engineer can easily personalize to a situation and requirement, ranging from numerical tools to manual engineering calculations and code provisions.
机译:风致疲劳是风敏结构设计中的关键主题。尽管如此,文献中提出的方法主要用于研究,或者对于工程应用而言过于简化。因此,几乎完全缺乏合适的工程和标准程序,这是结构和风力工程的主要缺点。从作者最近提出的封闭形式解决方案(CFS)开始,本文开发了一种新颖的工程方法来评估顺风引起的结构和结构元件的疲劳。该方法基于假设的层次结构,这些假设导致基本公式的逐步简化。获得并公式化了两类公式,分别称为I级和II级CFS,并特别讨论了输入参数。 I级CFS包含三个进一步的简化,它们的共同目标是提供参考目标解决方案的精确近似值。 II级CFS意味着将三种不同的简化方式结合在一起,其共同目标是在安全方面提供简单的解决方案。这套CFS是在通用程序中构建的,任何国家,社会或工程师都可以轻松地根据情况和要求进行个性化设置,范围从数字工具到手动工程计算和代码规定。

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