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A COMPARATIVE STUDY OF MASS BASED VIBRATION DAMPERS

机译:基于质量的减振器的比较研究

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Undesired vibrations in structures, buildings, and machines lead to reduction in the life of the system and greatly affects the safety of the occupying or operating personnel. In addition, economic and time losses could result from needed repairs or reconstruction. Many control techniques, active and passive, have been devised over the years to reduce/eliminate the vibrations in the aforementioned systems. Passive vibration control techniques are favorable over the active ones due to their simplicity, ease of implementation, cost, and power consumption. In dynamic structures, such as large buildings, passive control techniques are favored over their active counterparts. The most common types of passive control devices are tuned mass and impact dampers. The advocates of each of these devices boasts advantages of the others; however, there have been no systematic studies to compare and quantify the effectiveness of each of these types of devices as well as their suitability for specific applications. In this paper, a comparative study between the tuned mass dampers and impact dampers is conducted. A one-story structure is used to show the effectiveness of each of these devices in absorbing the vibrations of the structure. The coupled systems are modeled and simulated under free vibrations. The time responses are acquired using the same geometric parameters, excitation, and initial conditions. The comparisons are based on the settling time and amplitude decay rates of the primary system using each damper type. The numerical results show that both dampers can produce similar dampening effects if the parameters are optimized; however, correlating the dampers parameters is a challenging problem in the field of vibration and control.
机译:结构,建筑物和机器中不希望有的振动会导致系统寿命缩短,并极大地影响居住或操作人员的安全。此外,由于需要维修或重建,可能造成经济和时间损失。多年来,已经开发出许多主动和被动控制技术,以减少/消除上述系统中的振动。被动振动控制技术由于其简单,易于实施,成本和功耗而优于主动振动控制技术。在诸如大型建筑物之类的动态结构中,被动控制技术胜于主动控制技术。被动控制设备中最常见的类型是调谐质量块和冲击阻尼器。这些装置中的每一个的倡导者都拥有其他装置的优势。但是,还没有系统的研究来比较和量化每种类型的设备的有效性以及它们对特定应用的适用性。本文对调谐质量阻尼器和冲击阻尼器进行了比较研究。使用一层结构来显示这些设备中的每一个在吸收结构振动方面的有效性。在自由振动下对耦合系统进行建模和仿真。使用相同的几何参数,激励和初始条件获取时间响应。比较是基于使用每种阻尼器类型的主系统的建立时间和幅度衰减率。数值结果表明,如果对参数进行优化,则两个阻尼器都可以产生相似的阻尼效果。然而,在振动和控制领域中,使阻尼器参数相关是一个具有挑战性的问题。

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