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Strategies for Mitigating Floor Vibrations - Case Studies for Practicing Engineers

机译:减轻地板振动的策略-执业工程师案例研究

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Increasingly vibration criteria are required in building floor designs. Whether it is for comfort of occupants or the proper functioning of equipment, floor vibration criteria have become important in many designs. This paper explores different strategies to mitigate floor vibrations in common steel floor systems and discusses them in the context of three case studies. Strategies include the more traditional methods of stiffening and adding mass as well as other methods such as engaging multiple bays, splitting floors and adding tuned mass dampers. Two case studies look at situations where dancing or aerobics rooms were placed adjacent to office spaces and other sensitive areas. Stiffening and adding mass for such cases proved very costly and burdensome as beam sizes were unmanageably large. In one case, the floor was separated with a joint and for the other the floor was stiffened and tuned mass dampers were added. The third case study explores a situation where a piece of medical imaging equipment was desired to be located on an elevated floor with long span trusses. This situation required significant stiffening, addition of tuned mass dampers and a bridging truss to spread out vibration between bays. This increased the resonant frequencies of the floor system and added damping tuned to the resonance with the highest vibration amplitude. The former method placed the target resonance out of the reach of the lower harmonics caused by walking and the latter method lowered the peak velocity in the floor. This paper highlights how each method optimized performance to avoid resonance and reduce peak vibrations. Finally, the merits & disadvantages of each of these methods as well as the pros & cons of various computational tools used to assist in the design for vibration are discussed.
机译:建筑地板设计中越来越需要振动准则。无论是为了乘员的舒适还是设备的正常运行,地板振动标准在许多设计中都变得很重要。本文探讨了减轻普通钢地板系统中地板振动的不同策略,并在三个案例研究的背景下进行了讨论。策略包括更传统的加强和增加质量的方法,以及其他方法,例如接合多个隔间,分割地板和添加调谐的质量阻尼器。有两个案例研究研究了在办公室或其他敏感区域附近放置舞蹈室或健美操室的情况。在这种情况下,由于光束尺寸难以控制,因此加硬和增加质量非常昂贵且麻烦。在一种情况下,地板通过接缝分开,而在另一种情况下,地板则变硬并添加了调谐质量阻尼器。第三个案例研究探讨了一种情况,即需要将一台医学成像设备放置在具有大跨度桁架的高架地板上。这种情况需要显着的加固,增加调谐的质量阻尼器和桥接桁架,以在机架之间散布振动。这增加了地板系统的共振频率,并增加了以最高振动幅度调谐至共振的阻尼。前一种方法将目标共振放置在行走引起的低谐波范围之外,而后一种方法则降低了地板的峰值速度。本文重点介绍了每种方法如何优化性能以避免共振并减少峰值振动。最后,讨论了每种方法的优缺点以及用于协助振动设计的各种计算工具的优缺点。

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