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Optimization of longitudinal viscous dampers for a freight railway cable-stayed bridge under braking forces

机译:制动力作用下货运铁路斜拉桥纵向粘性阻尼器的优化

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摘要

Under braking forces of a freight train, there are great longitudinal structural responses of a large freight railway cable-stayed bridge. To alleviate such adverse reactions, viscous dampers are required, whose parametric selection is one of important and arduous researches. Based on the longitudinal dynamics vehicle model, responses of a cable-stayed bridge are investigated under various cases. It shows that there is a notable effect of initial braking speeds and locations of a freight train on the structural responses. Under the most unfavorable braking condition, the parameter sensitivity analyses of viscous dampers are systematically performed. Meanwhile, a mixing method called BPNN-NSGA-II, combining the Back Propagation neural network (BPNN) and Non-Dominated Sorting Genetic Algorithm With Elitist Strategy (NSGA-II), is employed to optimize parameters of viscous dampers. The result shows that: 1. the relationships between the parameters of viscous dampers and the key longitudinal responses of the bridge are high nonlinear, which are completely different from each other; 2. the longitudinal displacement of the bridge main girder significantly decreases by the optimized viscous dampers.
机译:在货运列车的制动力作用下,大型货运铁路斜拉桥具有很大的纵向结构响应。为了减轻这种不良反应,需要粘性阻尼器,其参数选择是重要而艰巨的研究之一。基于纵向动力学车辆模型,研究了斜拉桥在各种情况下的响应。结果表明,初始制动速度和货车位置对结构响应有显着影响。在最不利的制动条件下,系统地执行了粘性阻尼器的参数灵敏度分析。同时,结合BP神经网络(BPNN)和非支配排序遗传算法与精英策略(NSGA-II)相结合的BPNN-NSGA-II混合方法来优化粘性阻尼器的参数。结果表明:1.粘性阻尼器的参数与桥梁关键纵向响应之间的关系是高度非线性的,彼此之间完全不同; 2.通过优化的粘性阻尼器,桥主梁的纵向位移明显减小。

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