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Tuning criterion for the inertial tuned damper. Design using phasors in the Argand-Gauss plane

机译:惯性调谐阻尼器的调谐标准。在 Argand-Gauss 平面中使用相量进行设计

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A new approach to the design of a dynamic damper for a monomass oscillator is presented; the design procedure is then applied to control a multimodal oscillator. This new dynamics emerged from an analysis by means of phasors (rotating vectors in the Argand-Gauss plane) which revealed the phase relations between the damper and main oscillator. In particular this work introduces a geometric formalism, based on the use of phasors in the complex plane, for the sizing of inertial dampers applied to multimodal structural oscillators. Their damping effect depends on the fact that the response of the secondary oscillator (the damper) delays the response of the primary mass by 90°, so that the elastic force transmitted by the damper becomes a viscous force on the controlled oscillator. When such condition occurs we say that the damper is 'tuned' to the main oscillator: the damping induced by the damper serves to limit the displacement of main oscillator. Our geometrical approach provides a method whose language is close to that of structural mechanics, thus paving the way to the professionals for: (i) sizing the damper parameters and (ii) evaluating the stability to the damped system and its performance limits. The aim of the development is that of exploring the use of dampers to control the response of buildings under horizontal seismic and aerodynamic loads.
机译:提出了一种单质量振荡器动态阻尼器设计的新方法;然后应用设计程序来控制多模态振荡器。这种新的动力学来自通过相量(阿甘-高斯平面中的旋转矢量)进行的分析,揭示了阻尼器和主振荡器之间的相位关系。特别是,这项工作引入了一种几何形式,基于在复平面中使用相量,用于测量应用于多模态结构振荡器的惯性阻尼器的尺寸。它们的阻尼效果取决于以下事实:次级振荡器(阻尼器)的响应将初级质量的响应延迟 90°,因此阻尼器传递的弹性力成为受控振荡器上的粘性力。当这种情况发生时,我们说阻尼器被“调谐”到主振荡器:阻尼器引起的阻尼用于限制主振荡器的位移。我们的几何方法提供了一种语言接近结构力学的方法,从而为专业人员铺平了道路:(i)确定阻尼器参数的尺寸,(ii)评估阻尼系统的稳定性及其性能极限。该开发项目的目的是探索使用阻尼器来控制建筑物在水平地震和空气动力载荷下的响应。

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