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Effects of Traffic Loads and Track Parameters on Rail Wear: A Case Study for Yenikapi–Ataturk Airport Light Rail Transit Line

机译:交通负荷与轨道参数对铁路磨损的影响 - 以yenikapi-aataturk机场轻轨交通线为例

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The aim of this study is to investigate the effects of traffic loads and track parameters, including track curvature, superelevation, and train speed, on vertical and lateral rail wear. The Yenikapi–Ataturk Airport Light Rail Transit (LRT) line in Istanbul was selected as a case study, and rail wear measurements were carried out accordingly. Passenger counts were performed in all wagons of the train on different days and time intervals to calculate the number of passengers carried in track sections between stations regarding traffic loads on the LRT line. Values of traffic load, track curvature, superelevation, and speed were determined for each kilometer where measurements of rail wear were conducted. A multiple linear regression analysis (MLRA) method was used to identify effective parameters on rail wear. Independent variables in MLRA for both vertical and lateral wear include traffic load, track curvature, superelevation, and train speed. The dependent variables in MLRA for vertical and lateral wear are the amount of vertical and lateral wear, respectively. The correlation matrix of the dependent and independent variables was analyzed before performing MLRA. Multicollinearity tests and cross-validation analyses were conducted. According to the results of MLRA for vertical and lateral wear, the obtained coefficients of determination indicate that a high proportion of variance in the dependent variables can be explained by the independent variables. Traffic load has a statistically significant effect on the amount of vertical and lateral rail wear. However, track curvature, superelevation, and train speed do not have a statistically significant effect on the amount of vertical or lateral rail wear.
机译:本研究的目的是研究交通负荷和轨道参数的影响,包括垂直和横向轨道磨损的轨道曲率,超级化和火车速度。伊斯坦布尔的Yenikapi-Ataturk机场轻轨运输(LRT)线被选为案例研究,并相应地进行了轨道磨损测量。在不同日子和时间间隔的所有货车上进行了乘客计数,以计算关于LRT线上的交通负载的站点之间携带的乘客数量。对于每公里,确定交通负荷,轨道曲率,超级性和速度的值,其中进行了轨道磨损的测量。多元线性回归分析(MLRA)方法用于识别轨道磨损的有效参数。垂直和横向磨损的MLRA中的独立变量包括交通负荷,跟踪曲率,超级和火车速度。 MLRA用于垂直和横向磨损的依赖变量分别是垂直和横向磨损的量。在执行MLRA之前分析了依赖性和独立变量的相关矩阵。进行多型性测试和交叉验证分析。根据MLRA的结果,用于垂直和横向磨损,所获得的测定系数表明,所获得的变量中的高比例方差可以通过独立变量来解释。交通负荷对垂直和横向轨道磨损量具有统计学显着的影响。然而,跟踪曲率,超级和火车速度对​​垂直或横向轨道磨损的量没有统计学显着的影响。

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