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Tuning Structural Properties of High-Rise Buildings to Control Wind Response

机译:调整高层建筑的结构性,控制风响应

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Structural design of tall buildings is always driven by forces of nature, such as wind and earthquakes. As buildings get taller, wind-induced dynamic response dictates the design of the lateral system to meet both strength and serviceability requirements. The wind-induced dynamic response depends on geometric properties, such as building shape and height, as well as the structural properties. Building geometry is usually beyond the control of the structural engineer. However, building's structural properties; mass, stiffness and damping, are selected by the structural engineer. This paper discusses the effect of mass, stiffness and damping on dynamic wind forces and floor accelerations in the across-wind direction. Simple charts that relate the change in natural frequency to the base moment are developed. Furthermore, another set of charts showing the relationship between the building's natural frequency, the mass and the top floor acceleration is also presented. The use of these charts is demonstrated through a number of example projects, which describe situations that can face the design engineer after wind loads and accelerations have already been determined by wind tunnel testing. These situations include change of mass, stiffness or performance objectives.
机译:高层建筑的结构设计总是由自然力量的驱动,如风和地震。随着建筑物更高,风引起的动态响应决定了横向系统的设计,以满足强度和可维护性要求。风引起的动态响应取决于几何特性,例如建筑物形状和高度,以及结构性质。建筑几何形状通常超出了结构工程师的控制。但是,建设的结构性;质量,刚度和阻尼,由结构工程师选择。本文讨论了质量,刚度和阻尼对跨风向动态风力和地板加速度的影响。开发了将自然频率变化与基准片段相关的简单图表。此外,还提出了另一组图表,示出了建筑物的固有频率,质量和顶层加速之间的关系。使用这些图表是通过一些示例项目,它描述后风荷载和加速度已经通过风洞测试确定可以面对设计工程师的情况下的证实。这些情况包括大量,僵硬或性能目标的变化。

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