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Dynamic response of steel-concrete composite bridges loaded by high-speed train

机译:高速列车荷载下钢-混凝土组合桥的动力响应

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The paper focuses on dynamic analyses of a series of simply-supported symmetric composite steel-concrete bridges loaded by an ICE-3 train moving at high speeds up to 300 km/h. The series includes five bridges with span lengths ranging from 15 m to 27 m, with repeatable geometry of the superstructures. The objects, designed according to Polish standards valid from 1980s to 2010, are modelled on the bridges serviced on the Central Main Line in Poland since 1980s. The advanced, two-dimensional, physically nonlinear model of the bridge-track structure-high-speed train system takes into account unilateral nonlinear wheel-rail contact according to Hertz's theory and random vertical track irregularities equal for both rails. The analyses are focused on the influence of random track irregularities on dynamic response of composite steel-concrete bridges loaded by an ICE-3 train. It has been pointed out that certain restrictions on the train speed and on vertical track irregularities should be imposed.
机译:本文重点研究了由ICE-3列车以最高时速300 km / h行驶的一系列简支对称钢-混凝土组合对称桥梁的动力分析。该系列包括五座跨度在15 m至27 m之间的桥,上部结构具有可重复的几何形状。这些物体是根据1980年代至2010年有效的波兰标准设计的,其模型以1980年代以来波兰中央干线上维修的桥梁为模型。桥梁-轨道结构-高速列车系统的先进的二维物理非线性模型根据赫兹的理论考虑了单边非线性轮轨接触,并且两个轨道的垂直轨道随机性均相等。分析的重点是随机轨道的不规则性对ICE-3列车加载的复合钢-混凝土桥动力响应的影响。已经指出,应该对火车速度和垂直轨道的不规则性施加某些限制。

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