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A new type of Tuned Liquid Damper and its effectiveness in enhancing seismic performance: Numerical characterization, experimental validation, parametric analysis and life-cycle based design.

机译:一种新型的调谐液体阻尼器及其在增强抗震性能方面的有效性:数值表征,实验验证,参数分析和基于生命周期的设计。

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摘要

The research presented here introduces a new type of liquid mass damper, called Tuned Liquid Damper with Floating Roof (TLD-FR) which combines the favorable characteristics of traditional Tuned Liquid Dampers (TLD) and liquid column dampers, and further examines its efficiency for seismic applications for Chile. The TLD-FR consists of a traditional TLD (liquid tank filled with liquid) with the addition of a floating roof. The sloshing of the liquid within the tank is what still provides the inertia damper effect, but the roof prevents wave breaking phenomena and introduces a practically linear response and a dynamic behavior in a dominant only mode. This creates a vibratory behavior that resembles other types of a linear mass dampers and a framework is developed to characterize this behavior with a simple parametric description that can facilitate an easy comparison to such dampers. Within this framework, focus is given on a theoretical/computational characterization of the new device, coupled with an experimental validation of its capabilities and of the established numerical tools. The aforementioned parametric formulation is then used to develop an approach that facilitates a direct design in the parametric space, as well as an efficient mapping back to the different tank geometries that correspond to each parametric configuration. During this process the efficiency of mass dampers for seismic applications in Chile is also examined by comparing the performance across different types of ground motions, representing different regions around the world. Finally, a versatile life-cycle assessment and design of the new device is established considering risk characterizations appropriate for the Chilean region, so that the cost-benefits from its adoption can be directly investigated. This involves the development of a multi-criteria design approach that considers the performance over the two desired goals: (i) reduction of the total life-cycle cost considering the upfront damper cost as well as seismic losses and (ii) reduction of the consequences, expressed through the repair cost, for low likelihood but high impact events. Through this approach the financial viability of the TLD-FR (competitiveness against TMDs) for enhancing seismic performance is demonstrated.
机译:这里介绍的研究介绍了一种新型的液体质量阻尼器,称为带浮顶的可调式液体阻尼器(TLD-FR),它结合了传统的可调式液体阻尼器(TLD)和液柱阻尼器的优越特性,并进一步研究了其抗震性能智利的申请。 TLD-FR由传统的TLD(装满液体的储液罐)和浮动顶棚组成。储罐内液体的晃动仍然可以提供惯性阻尼效果,但顶盖可防止波浪破裂现象,并在仅占主导地位的模式下引入实际的线性响应和动态行为。这产生了类似于其他类型的线性质量阻尼器的振动行为,并且开发了一种框架来通过简单的参数描述来表征这种行为,该参数描述可以促进与此类阻尼器的轻松比较。在此框架内,重点放在新设备的理论/计算特性上,并对其功能和已建立的数值工具进行实验验证。然后,使用上述参数公式来开发一种方法,该方法有助于在参数空间中进行直接设计,以及有效地映射回与每个参数配置相对应的不同储罐几何形状。在此过程中,还通过比较代表全球不同地区的不同类型地面运动的性能,来研究智利地震应用质量阻尼器的效率。最后,考虑到适合智利地区的风险特征,对新设备进行了通用的生命周期评估和设计,因此可以直接研究其采用带来的成本效益。这涉及开发一种多准则设计方法,该方法要考虑两个预期目标的性能:(i)考虑前期阻尼器成本以及地震损失,从而降低总生命周期成本,以及(ii)减少后果通过维修成本表示,适用于可能性低但影响大的事件。通过这种方法,证明了TLD-FR在提高抗震性能方面的财务可行性。

著录项

  • 作者

    Ruiz, Rafael.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Civil engineering.;Mechanics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 252 p.
  • 总页数 252
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:58

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