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LABORATORY DEVELOPMENT AND TESTING OF 'SMARTROCK' FOR RAILROAD BALLAST USING DISCRETE ELEMENT MODELING

机译:离散元建模的铁路道ALL道理“智能岩”实验室开发与测试

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Ballast aggregate settlement is generally a result of consolidation or rearrangment of ballast particles in the area underneath crossties. Excessive settlement negatively impacts track performance, resulting in increased risk of train derailment. The purpose of this paper is to compare two methods to evaluate ballast aggregate settlement with repeated loading in railroad: discrete element modeling and laboratory tests using "SmartRock". In this study, ballast aggregates are considered as uniformly graded, angular shaped with crushed faces. For the discrete element modeling, digital imaging techniques are utilized to create the ballast aggregates. Aggregate settlement in railroad ballast and the effect of aggregate shape on the dynamic response of ballast are evaluated through the discrete element simulations. A wireless device, "SmartRock" is developed to study the relationship between individual ballast particle behavior and overall ballast performance. It has a shell of a typical ballast particle shape with force cells attached on the surface and embedded with a tri-axial gyroscope, a tri-axial accelerometer, and a tri-axial magnetometer. The device can move under train traffic like a real ballast particle and record inter-particle contact forces and particle motion in real time. For the laboratory tests, a model-scale track section is constructed and subjected to repeated loading similar to train traffic. The developed "SmartRock" are embedded below rail seats and in the track shoulders. The laboratory data using "SmartRock" can be compared with results from the discrete element modeling in the future. These comparisons will validate the discrete element modeling procedure as a means to analyze railroad ballast aggregate behavior and the potential of "SmartRock" in railroad applications.
机译:镇流器骨料沉降通常是在令人睫毛下方区域的镇流器颗粒的固结或重排的结果。过度定居点对跟踪性能产生负面影响,导致火车脱轨的风险增加。本文的目的是比较两种方法来评估镇流器骨料沉降与铁路中的重复装载:使用“smartrock”的离散元素建模和实验室测试。在该研究中,镇流器聚集体被认为是均匀分级的角形,具有压碎的面。对于离散元素建模,利用数字成像技术来创建镇流器聚集体。通过离散的元件模拟评估铁路压载的聚集沉降和骨料形状对镇流器动态响应的影响。开发了一种无线设备,“Smartrock”以研究各个镇流器颗粒行为与整体镇流器性能之间的关系。它具有典型的镇流器颗粒形状的壳,其力电池附着在表面上并嵌入三轴陀螺仪,三轴加速度计和三轴磁力计。该装置可以像真正的压载颗粒一样在火车流量下移动,并实时地记录粒子接触力和颗粒运动。对于实验室测试,建造模型尺度轨道部分并经受类似于训练流量的重复装载。发达的“Smartrock”嵌入铁路座椅下方,轨道肩部。可以将使用“Smartrock”的实验室数据与未来离散元素建模的结果进行比较。这些比较将验证离散元素建模程序作为分析铁路镇流器聚集行为的手段和铁路应用中“Smartrock”的潜力。

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