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Vibration characteristics of steel-concrete composite floor systems

机译:钢-混凝土复合地板系统的振动特性

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Trends towards long-span, lightweight floors in steel-concrete composite construction are resulting in structures possessing low natural frequencies, and potentially susceptible to vibration problems. The most common source of vibrations is caused by human activities on the floor, however, in some instances, mechanically induced vibrations from air conditioning plant, etc. may also be problematic. In this paper the serviceability assessment of floor vibration occasioned by walking activities is considered. Over 30 years ago concerns were raised regarding vibrations induced by walking on steel-concrete composite floors that satisfied traditional deflection criteria. In response to these concerns, design criteria based on a simple impulsive loading function from a person rising onto the balls of the feet, and suddenly dropping onto the heels has been used as a measure of floor acceptability. More recently, design procedures have been developed that more realistically consider the excitation of the floor from walking activities. In the first part of this paper a historical review of acceptability criteria for floor vibrations will be made. Following this, the current design methodologies for steel-concrete composite floors will be reviewed prior to the presentation of results from a series of in situ vibration tests on a wide variety of floor types. After comparing the test results with current guidance, design recommendations and suggestions for future research will be given.
机译:钢-混凝土复合结构中大跨度,轻质地板的发展趋势导致结构固有频率较低,并且容易受到振动问题的影响。最常见的振动源是由地板上的人为活动引起的,但是,在某些情况下,来自空调设备等的机械感应振动也可能会成为问题。本文考虑了步行活动引起的地板振动的适用性评估。三十多年前,人们开始担心在满足传统挠度标准的钢混凝土复合地板上行走所引起的振动。响应于这些关注,基于从人升到脚的球上并且突然掉在脚后跟上的简单的脉冲载荷函数的设计标准已经用作地板可接受性的量度。最近,已经开发出了更实际地考虑步行活动对地板的激发的设计程序。在本文的第一部分中,将对地板振动的可接受性标准进行历史回顾。在此之后,在介绍一系列针对各种地板类型的原位振动测试结果之前,将对钢-混凝土复合地板的当前设计方法进行审查。在将测试结果与当前指导进行比较之后,将给出设计建议和对未来研究的建议。

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