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Solutions for the Design and Increasing of Efficiency of Viscous Dampers

机译:设计和提高粘性阻尼器效率的解决方案

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In last decades many strategies for seismic vulnerability mitigation of structures have been studied and experimented; in particular energy dissipation by external devices assumes a great importance for the relative simplicity and efficacy. Among all possible approaches the use of fluid viscous dampers are very interesting, because of their velocity-dependent behaviour and relatively low costs. Application on buildings requires a specific study under seismic excitation and a particular attention on structural details. Nevertheless seismic codes give only general information and in most case the design of a such protection systems results difficu this problem is relevant also in Italy where last seismic code (NTC 2008) on one hand has increased the performance level to be attributed to buildings, especially public and strategic, on the other hand does not give a guide for the design of external dissipation devices as fluid viscous dampers or others. In this study, after a general description of fluid viscous dampers and the criteria of applying on buildings, a simplified procedure for the design of these devices is discussed also by means an application.
机译:在最近的几十年中,已经研究和试验了许多减轻结构地震易损性的策略。特别地,外部设备的能量消耗对于相对简单和有效非常重要。在所有可能的方法中,使用流体粘性阻尼器非常有趣,因为它们的速度依赖行为且成本相对较低。在建筑物上的应用需要在地震激励下进行专门研究,并特别注意结构细节。然而,地震法规仅提供一般信息,并且在大多数情况下,这种保护系统的设计很困难。这个问题在意大利也很重要,在意大利,最新的地震法规(NTC 2008)一方面提高了建筑物的性能水平,尤其是公共和战略建筑物,另一方面却没有为外部耗散设备的设计提供指导作为液体粘性阻尼器或其他。在这项研究中,在对流体粘性阻尼器进行了一般性描述以及在建筑物上应用的标准之后,还通过一种应用方式讨论了设计这些装置的简化程序。

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