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Components of wind -tunnel analysis using force balance test data

机译:使用力平衡测试数据进行风洞分析的组件

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Since its development in the early 1980's the force balance technique has become a standard method in the efficient determination of structural loads and responses. Its usefulness lies in the simplicity of the physical model, the relatively short records required from the wind tunnel testing and its versatility in the use of the data for different sets of dynamic properties. Its major advantage has been the ability to provide results in a timely manner, assisting the structural engineer to fine-tune their building at an early stage of the structural development. The analysis of the wind tunnel data has evolved from the simple un-coupled system to sophisticated methods that include the correction for non-linear mode shapes, the handling of complex geometry and the handling of simultaneous measurements on multiple force balances for a building group. This paper will review some of the components in the force balance data analysis both in historical perspective and in its current advancement. The basic formulation of the force balance methodology in both frequency and time domains will be presented. This includes all coupling effects and allows the determination of the resultant quantities such as resultant accelerations, as well as various load effects that generally were not considered in earlier force balance analyses. Using a building model test carried out in the wind tunnel as an example case study, the effects of various simplifications and omissions are discussed.
机译:自1980年代初期发展以来,力平衡技术已成为有效确定结构载荷和响应的标准方法。它的有用之处在于物理模型的简单性,风洞测试所需的相对较短的记录以及其在将数据用于不同组的动态特性方面的多功能性。它的主要优势在于能够及时提供结果,帮助结构工程师在结构开发的早期阶段对其建筑物进行微调。风洞数据的分析已从简单的非耦合系统演变为复杂的方法,包括校正非线性模式形状,处理复杂的几何形状以及处理针对建筑群的多个力平衡的同时测量。本文将从历史的角度及其当前的发展回顾一下力平衡数据分析的一些组成部分。将介绍频域和时域力平衡方法的基本公式。这包括所有耦合效应,并允许确定最终的量(例如,最终的加速度)以及各种在早期的力平衡分析中通常未考虑的载荷效应。以在风洞中进行的建筑模型测试为例,研究了各种简化和遗漏的影响。

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