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Comparison of Laboratory Testing Using SmartRock and Discrete Element Modeling of Ballast Particle Movement

机译:使用SmartRock和镇流器颗粒运动的离散元建模进行实验室测试的比较

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摘要

Track performance is largely dependent on ballast performance. Unfavorable ballast conditions cause track geometry roughness and can contribute to increased rates of damage and deterioration to the rail, tie, and fastening components. Recent discrete element modeling (DEM) studies demonstrated a strong relationship between individual ballast particle movement and overall ballast performance. This paper presents a laboratory and numerical study on ballast particle movement under cyclic loading. In the laboratory test, a wireless device called SmartRock was embedded in a ballast box to monitor individual ballast particle movement beneath a crosstie under cyclic loading. In the numerical study, an image-aided DEM approach was utilized to generate DEM particles with a realistic shape of ballast particles and simulate the ballast box test. The laboratory test results recorded by the SmartRock and DEM simulations results were compared. Good agreement was observed between the simulated and recorded particle motion in terms of peak vertical, horizontal, and angular accelerations during ballast deformation. The results indicate that horizontal movement and rotation are important modes of motion for ballast particles under cyclic loading. The SmartRock is also shown to be capable of recording real-time particle movement including translation and rotation and, thus, can be used as a fundamental research and monitoring tool in railroads.
机译:轨道性能主要取决于镇流器性能。不利的压载条件会导致轨道几何形状不平整,并可能导致损坏率增加,并对铁轨,扎带和紧固组件造成损坏。最近的离散元素建模(DEM)研究表明,单个压载颗粒运动与整体压载性能之间存在很强的关系。本文提供了在循环载荷下压载颗粒运动的实验室和数值研究。在实验室测试中,将一个名为SmartRock的无线设备嵌入到镇流器盒中,以监视循环负载下横纹在其下方的单个镇流器颗粒的运动。在数值研究中,使用了图像辅助DEM方法来生成具有逼真的镇流器颗粒形状的DEM颗粒,并模拟了镇流器箱测试。比较了SmartRock和DEM模拟结果记录的实验室测试结果。在镇流器变形过程中,在峰值垂直,水平和角加速度方面,在模拟和记录的粒子运动之间观察到了很好的一致性。结果表明,水平移动和旋转是压载颗粒在循环载荷下的重要运动方式。还显示了SmartRock能够记录包括平移和旋转在内的实时粒子运动,因此可以用作铁路中的基础研究和监视工具。

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