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Monitoring based nonlinear system modeling of bridge-continuous welded rail interaction

机译:基于监测的桥梁-连续焊接轨道相互作用非线性系统建模

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The investigation of longitudinal loads and their influence on stresses and internal forces in continuous welded rails (CWR) connected to bridge deck has been discussed intensively in the last 20 years. These discussions originated from the 1995 UIC-recommendation 774-3R, and led to the introduction of the Eurocode 1. These standards are very conservative. For instance, the code used a bi-linear stiffness-displacement law for the validation of the rail-bridge structure interaction and its effects on the rail stresses lead for short bridge spans to rail interruptions. The objective of this paper is to formulate the capacities and boundary conditions of the rail-structure interaction by means of extended numerical linear and nonlinear analyses, which are not fully comprehended in the standard specifications and therefore result in conservative interaction laws. The analyses have been carried out by means of monitoring-based nonlinear finite element modeling using advanced beam-spring interaction laws and specified thermomechanical considerations for capturing the real thermal expansion of bridge structures.
机译:在过去的20年中,已经深入讨论了纵向载荷及其对连接至桥面板的连续焊接导轨(CWR)中应力和内力的影响的研究。这些讨论源于1995年UIC建议774-3R,并导致引入了Eurocode1。这些标准非常保守。例如,该代码使用双线性刚度-位移定律来验证铁路桥梁结构的相互作用,其对钢轨应力的影响导致桥梁跨度短而导致钢轨中断。本文的目的是通过扩展的线性和非线性数值分析来公式化钢轨-结构相互作用的能力和边界条件,这在标准规范中并未完全理解,因此会产生保守的相互作用定律。通过使用先进的梁-弹簧相互作用定律和指定的热力学考虑因素来捕获基于桥梁结构的实际热膨胀,通过基于监视的非线性有限元建模进行了分析。

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