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首页> 外文期刊>Journal of bridge engineering >Critical Speed and Resonance Criteria of Railway Bridge Response to Moving Trains
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Critical Speed and Resonance Criteria of Railway Bridge Response to Moving Trains

机译:铁路桥梁对列车走动的临界速度和共振准则

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The dynamic response of railway bridges to moving trains is complicated because of the involvement of the moving loads and the moving masses. Among various response characteristics, bridge resonance is of particular interest in terms of the structural effect and safety of the bridge. As far as the global bridge response is concerned, it is generally understood that when one of the apparent trainload excitation frequencies coincides with the fundamental natural frequency of the bridge, resonance could occur. However, such a general criterion is of little practical use because a typical trainload would involve numerous apparent frequencies (at equal intervals); consequently, for a given bridge (natural frequency), there could be many train speeds that satisfy the preceding resonance condition. Therefore, it is necessary to establish the relative severity of the resonance associated with each resonance scenario. This paper presents the development of a new resonance severity indicator, called Z factor, for the assessment of the resonance effect. It is found that the resonance severity is essentially governed by the ratio between the bridge and carriage lengths. When the carriage mass is significant, the same Z factor will apply; however, the underlying resonance speeds will change because of the altered natural frequency of the bridge-train system. Numerical results demonstrate that the proposed methods are effective for the determination of the resonance effects associated with the potential resonance speeds.
机译:由于动荷载和动质量的参与,铁路桥梁对动车的动力响应很复杂。在各种响应特性中,就桥梁的结构效果和安全性而言,桥梁共振尤为重要。就整体电桥响应而言,通常应理解,当视在列车负载激励频率之一与电桥的基本固有频率一致时,可能会发生共振。但是,这样的一般标准几乎没有实际用途,因为典型的列车负载会涉及许多视在频率(以相等的间隔);因此,对于给定的桥梁(固有频率),可能有许多满足先前共振条件的列车速度。因此,有必要确定与每种共振情况相关的共振的相对严重性。本文介绍了一种新的共振强度指标,称为Z因子的开发,用于评估共振效果。已经发现,共振的严重程度基本上由桥和托架长度之间的比率决定。当托架质量很大时,将应用相同的Z因子;然而,由于桥式列车系统固有频率的改变,潜在的共振速度将发生变化。数值结果表明,所提出的方法对于确定与潜在共振速度有关的共振效应是有效的。

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