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MULTIPLE REGRESSION ANALYSIS OF THE IMPACT OF TRACK GEOMETRY ON WHEEL-RAIL FORCES

机译:轨道几何对轮轨力的影响多元回归分析

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One of the fundamental keys to improving track safety standards is to establish a strong correlation between track geometry variations and wheel-rail force parameters that are indicators of vehicle-track safety performance. In this study, wheel-rail forces were collected during field tests of a loaded lumber car and an empty tank car. Computer models of the two tested freight cars were built, and the models were calibrated using field test results. The computer models were then used to evaluate the impact of varying track geometry parameters on track safety using the maximum single wheel L/V ratio, maximum truck side L/V ratio, and minimum vertical wheel load ratio. It was confirmed again that the correlations between these force parameters and any individual geometry parameter were weak. With further investigation, it was found that much better correlation can be achieved using multiple regression techniques to define each wheel-rail force parameter as a function of all track geometry parameters combined together. Expressions of the maximum truck side L/V ratio, maximum single wheel L/V ratio, and minimum vertical wheel load ratio were obtained as functions of curvature, cross level, alignment, gauge, and cant deficiency using multiple regression analysis.
机译:一个提高轨道安全标准的基本密钥是建立轨道几何形状的变化和轮轨力参数是车辆 - 轨道安全性能指标之间的强相关性。在这项研究中,在装载的木材车的现场测试和一个空罐车收集轮轨作用力。两种试验货车的计算机模型建立,以及模型,利用现场测试结果进行校准。然后,计算机模型被用于评价不同轨道几何参数的轨道上的安全使用最大单轮L / V比率,最大转向架侧L / V比,以及最小垂直车轮负载率的影响。它再次证实,这些力的参数和任何个人几何参数之间的相关性很弱。随着进一步的研究,人们发现,更好的相关性可以使用多种回归技术来定义每个轮轨力参数,因为所有的轨道几何参数组合在一起的一个功能来实现。最大卡车侧L / V比率,最大单轮L / V比,以及最小垂直车轮负载率的表达式作为用多重回归分析的曲率的功能,交叉水平,对齐,压力表,和欠超高获得。

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