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Active aerodynamic control of structures.

机译:主动空气动力学控制结构。

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摘要

Modern tall buildings and other slender structures are highly susceptible to strong winds, often causing occupant discomfort and in some cases potential structural safety concerns. In this dissertation an innovative active control device is proposed to mitigate the harmful wind effects on tall buildings and structures. This new device termed as Aerodynamic Flap System (AFS) draws important concepts from fluid mechanics and control theory to provide an energy efficient means of reducing the bidirectional (along and across) wind induced motion of tall buildings and other slender structures. AFS is a simple device consisting of two flaps attached on hinges to both the shear layer separation lines of a tall building. The operation of the control flaps is guided by a feedback control algorithm designed to reduce structural vibrations. AFS essentially acts as a vortex generating device and modifies the flow field around the structure. The objective of this dissertation is to present the results of analytical and experimental studies performed to develop design guidelines for the AFS. The dissertation discusses mathematical modeling of the uncontrolled and controlled tall building motion under the influence of wind forces supplemented with results from wind tunnel experiments. Control algorithms required to drive AFS are derived and role of different control parameters is discussed through numerical simulations. Approximate formulations which lead to design guidelines for AFS are also developed. Design example for a typical tall building is presented and practical aspects of AFS implementation are outlined.
机译:现代高层建筑和其他纤细结构很容易受到强风的影响,经常引起乘员不适,在某些情况下还可能引起结构安全隐患。本文提出了一种新颖的主动控制装置,以减轻对高层建筑和结构的有害风影响。这种称为空气动力学襟翼系统(AFS)的新设备借鉴了流体力学和控制理论的重要概念,为减少高层建筑和其他细长结构的双向(沿和横向)风致运动提供了一种节能的手段。 AFS是一种简单的设备,由两个折页组成,折页通过铰链连接到高层建筑物的两条剪切层分隔线上。控制襟翼的操作由旨在减少结构振动的反馈控制算法指导。 AFS本质上起着涡旋产生装置的作用,并改变了结构周围的流场。本文的目的是介绍分析和实验研究的结果,以制定AFS的设计指南。本文讨论了在风的影响下不受控制的高层建筑运动的数学模型,并辅以风洞实验的结果。推导了驱动AFS所需的控制算法,并通过数值模拟讨论了不同控制参数的作用。还制定了导致AFS设计指南的近似公式。给出了典型高层建筑的设计示例,并概述了AFS实施的实际情况。

著录项

  • 作者

    Gupta, Himanshu.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1997
  • 页码 182 p.
  • 总页数 182
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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