Vertical stiffness limit of 400 km/h high-speed railway simple-supported bridge considering excitation randomness

Xuli Chen, Huo-yue Xiang, Jin Zhu, Yongle Li
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Abstract

Vertical stiffness of the bridge is of paramount importance in guaranteeing optimal driving performance for high-speed railway (HSR) trains. Initially, the Auto Regression and Moving Average model with eXogenous input (ARMAX) model is employed as the surrogate model for the train-bridge (TB) coupling system. Then, the framework for analyzing vertical bridge stiffness is proposed employing the surrogate model, and the relationship between the train response affected by excitation randomness and the vertical stiffness indicators of the bridge is established. Finally, the influence of various factors such as train speed, train type, car body mass, and bridge span on stiffness limit of 400 km/h HSR simple-supported bridge (SSB) is examined. The results indicate that the surrogate model offers a notable advantage in computational efficiency, while maintaining a satisfactory accuracy in predicting the train response. With higher train speeds, lighter car body masses, and longer spans, the demand for stricter bridge stiffness limits becomes more pronounced. Based on the driving performance of the train types analyzed, the recommended stiffness limit is proposed for the prestressed concrete simply supported beam (SSB) bridges used in HSR, with a span length of less than 40 m and operating at a speed of 400 km/h.
考虑激振随机性的时速 400 公里高速铁路简支梁桥垂直刚度限值
桥梁的垂直刚度对于保证高速铁路(HSR)列车的最佳行驶性能至关重要。首先,采用带有外生输入(ARMAX)的自动回归和移动平均模型作为列车-桥梁(TB)耦合系统的代用模型。然后,利用代用模型提出了桥梁垂直刚度分析框架,并建立了受激励随机性影响的列车响应与桥梁垂直刚度指标之间的关系。最后,研究了列车速度、列车类型、车体质量和桥梁跨度等各种因素对时速 400 公里高铁简支桥(SSB)刚度限制的影响。结果表明,代用模型在计算效率方面具有明显优势,同时在预测列车响应方面保持了令人满意的精度。随着列车速度的提高、车体质量的减轻和跨度的加长,对桥梁刚度限制的严格要求变得更加明显。根据所分析的列车类型的行驶性能,提出了高铁中使用的预应力混凝土简支梁(SSB)桥梁的推荐刚度限值,跨度小于 40 米,运行速度为 400 公里/小时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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