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Technical performance and ride quality simulations of a prototype cushioning device for revenue service

机译:用于收入服务的原型缓冲装置的技术性能和乘坐质量模拟

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A simulation study was conducted using the AAR's Train Operation and Energy Simulator (TOES) to evaluate the impact and in-train performance of Miner Enterprises' new cushioning unit design. First, impact simulations were run to establish that the TOES model of the cushioning unit design was reasonable. This was done by comparing the model predictions with measured test data for various impact speeds. Then the model was incorporated for in-train simulations. For in-train simulations, a train consists was run on a revenue service route for the M-921D unit and the Miner unit. For data analysis, car body acceleration, coupler force, unit displacement, and car-to-car velocity were monitored on selected cars in all simulations. These data were filtered and then collected in histogram and burst modes. The Miner unit showed a reduction in acceleration amplitude in buff (negative accelerations) for the unit train.
机译:使用AAR的火车运行和能量模拟器(脚趾)进行了模拟研究,以评估矿工企业新的缓冲装置设计的影响和车载性能。首先,运行影响模拟以确定缓冲单元设计的脚趾模型是合理的。这是通过将模型预测与各种冲击速度进行测量的测试数据进行比较来完成的。然后该模型被纳入了列车的模拟。对于火车车内模拟,火车在M-921D单元和矿床的收入服务路线上运行。对于数据分析,在所有模拟中,在选定的汽车上监测车身加速度,耦合器力,单元位移和车辆到车速度。过滤这些数据,然后在直方图和突发模式下收集。矿工单元在单元列车的Buff(负加速器)中的加速度幅度降低。

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