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首页> 外文期刊>Journal of Sound and Vibration >Railway track geometry degradation due to differential settlement of ballast/subgrade – Numerical prediction by an iterative procedure
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Railway track geometry degradation due to differential settlement of ballast/subgrade – Numerical prediction by an iterative procedure

机译:通过迭代过程的差分沉降,铁路轨道几何降解导致的抗腔/路基 - 数值预测

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AbstractAn iterative procedure for numerical prediction of long-term degradation of railway track geometry (longitudinal level) due to accumulated differential settlement of ballast/subgrade is presented. The procedure is based on a time-domain model of dynamic vehicle–track interaction to calculate the contact loads between sleepers and ballast in the short-term, which are then used in an empirical model to determine the settlement of ballast/subgrade below each sleeper in the long-term. The number of load cycles (wheel passages) accounted for in each iteration step is determined by an adaptive step length given by a maximum settlement increment. To reduce the computational effort for the simulations of dynamic vehicle–track interaction, complex-valued modal synthesis with a truncated modal set is applied for the linear subset of the discretely supported track model with non-proportional spatial distribution of viscous damping. Gravity loads and state-dependent vehicle, track and wheel–rail contact conditions are accounted for as external loads on the modal model, including situations involving loss of (and recovered) wheel–rail contact, impact between hanging sleeper and ballast, and/or a prescribed variation of non-linear track support stiffness properties along the track model. The procedure is demonstrated by calculating the degradation of longitudinal level over time as initiated by a prescribed initial local rail irregularity (dipped welded rail joint).]]>
机译:<![CDATA [ 抽象 由于累积差分导致的铁路轨道几何(纵向水平)长期退化的数值预测的迭代过程提出了镇流器/路基的沉降。该程序基于动态车辆轨道相互作用的时域模型,以计算睡眠者和镇流器之间的短期接触载荷,然后在经验模型中使用,以确定每个睡眠者下方的镇流器/路基的沉降在长期。在每个迭代步骤中占用的负载循环(车轮通道)的数量由最大结算增量给出的自适应步长确定。为了减少动态车辆轨道相互作用的模拟的计算工作,施加具有截短模态集的复值模态合成,用于具有粘性阻尼的非比例空间分布的离散支持的轨道模型的线性子集。重力载荷和状态依赖的车辆,轨道和轮轨接触条件被占用的外部负载在模型上,包括涉及(和恢复的)轮轨接触的情况,悬挂式睡眠机和镇流器之间的影响,和/或沿轨道模型的非线性轨道支撑刚度特性的规定变型。通过计算由规定的初始局部轨道不规则(浸渍焊接轨道接头)发起的纵向水平的降低来证明该方法。 ]]]>

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