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Dynamic Response of Long Rectangular Floors Subjected to Periodic Force Excitation

机译:周期性作用下矩形长矩形地板的动力响应

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摘要

Since damping in lightweight floors is usually low, dynamic amplification can be rather high. Long rectangular plates subjected to concentrated loads are often investigated by a replacement beam with a so called “effective width”. Although this approach is a reliable tool for static loads, the steady-state dynamic response of beams and long plates subjected to periodic loads are significantly different. The maximum displacements and accelerations of beams (and of not-long rectangular plates) are obtained by using a dynamic amplification factor, which in the case of resonance is equal to 1/2ξ, where ξ is the damping ratio. For long plates (and for not-long orthotropic rib-stiffened plates), as discussed in the paper, the response and the amplification factor are substantially different from those of beams. Hence, design based on effective width may lead to 2–4 times higher acceleration than the real values. In an economic design, to avoid unnecessary damping enhancement, this effect must be taken into account.
机译:由于轻质地板的阻尼通常较低,因此动态放大可能会很高。承受集中载荷的矩形长板通常由具有所谓“有效宽度”的替换梁进行研究。尽管这种方法对于静载荷是可靠的工具,但是承受周期性载荷的梁和长板的稳态动态响应却大不相同。梁(和长矩形板)的最大位移和加速度通过使用动态放大系数获得,在共振的情况下,该系数等于 1 / 2 ξ ,其中 ξ 是阻尼比。如本文所述,对于长板(对于非长正交异性肋骨加筋板),其响应和放大系数与梁的响应和放大系数显着不同。因此,基于有效宽度的设计可能会导致加速度比实际值高2-4倍。在经济的设计中,为了避免不必要的阻尼增强,必须考虑到这种影响。

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