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A redesigned approach to the additional damping method in the dynamic analysis of simply supported railway bridges

机译:简称铁路桥梁动力分析中额外阻尼方法的重新设计方法

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摘要

In the dynamic analysis of simply supported railway bridges, the choice of vehicle models directly affects the quality of computed results. Simple moving load models usually overestimate the bridge response in comparison with models taking into account vehicle-bridge interaction effects. In order to compensate for this discrepancy, the Eurocode allows the increasing of structural damping for analyses performed with a moving load model. The specified additional damping is based on investigations carried out by the European Rail Research Institute in 1999 and may yield non-conservative results.This paper describes an extensive parametric study inspired by the common Additional Damping Method, aiming to eliminate its identified shortcomings. The applied input parameters for the study are based on existing European simply supported bridge structures with a ballast layer. In order to match the vertical accelerations computed with the Detailed Interaction Model, the additional damping for the Moving Load Model is determined for four European high-speed trains. The results show that the additional damping as integrated in the Eurocode is non-conservative. A redesigned approach enables the definition of conservative additional damping functions depending on the natural bridge frequency, the bridge mass and the train type.
机译:在简单支持的铁路桥梁动态分析中,车型的选择直接影响计算结果的质量。与考虑车辆桥接互动效应的模型相比,简单的移动负载模型通常高估桥梁响应。为了弥补这种差异,欧元汇允许增加用移动负荷模型进行分析的结构阻尼。指定的额外阻尼是基于1999年欧洲铁路研究所开展的调查,并可能产生非保守结果。本文描述了广泛的参数研究,灵感来自普通的额外阻尼方法,旨在消除其所识别的缺点。该研究的应用输入参数基于现有的欧式仅支持具有镇流器层的桥梁结构。为了匹配用详细的相互作用模型计算的垂直加速度,确定用于移动负载模型的附加阻尼,用于四个欧洲高速列车。结果表明,欧元展在欧洲码中的额外阻尼是非保守的。重新设计的方法使保守的额外阻尼功能的定义取决于天然桥梁频率,桥梁质量和列车类型。

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