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Adaptability Evaluation of the Upgraded Highway's Geometric Alignments Based on Speed-Related Characteristics: A Case Study

机译:基于速度相关特征的升级高速公路几何对排列的适应性评价:案例研究

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Upgrading Class I highways (i.e., divided highways without access control) to freeways (i.e., divided highways with full control of access) is a common method of freeway construction in China. This study investigates whether or not the geometric alignments from the Class I highway can adapt to the high speed traffic on the upgraded freeway by taking the highway from Ning'an to Fuxing in Heilongjiang Province as a case. Traffic conditions before and after the upgrade are video-recorded and then the traffic flow and operating speed data are extracted from the video. The acceleration data after the upgrade is measured by using a vehicle-mounted triaxial accelerometer. Based on the data collected, the adaptability of the upgraded freeway's geometric alignments is evaluated from the aspects of safety and comfort, and the quantitative criteria include design consistency and operating speed consistency for safety evaluation, and side friction factor and vertical acceleration for riding comfort evaluation. The evaluation results show that the overall performance of the geometric alignments is good after the upgrade, but sections with strict geometric limits perform slightly poorly.
机译:升级I级高速公路(即,除访问控制的划分高速公路)到高速公路(即,完全控制访问的分开的高速公路)是中国高速公路建设的常见方法。本研究调查了来自I类高速公路的几何对准,通过从宁安到黑龙江省的案件,通过从宁安到Fuxing的高速公路来适应升级的高速公路的高速流量。升级前后的交通状况是视频录制的,然后从视频中提取流量流和操作速度数据。通过使用车载的三轴加速度计测量升级后的加速数据。根据所收集的数据,升级后的高速公路的几何比对的适应性是从安全和舒适的方面评价,定量标准包括乘坐舒适性评价设计的一致性和安全性评价的操作速度的一致性,和侧摩擦系数和垂直加速度。评估结果表明,升级后几何对校准的整体性能良好,但具有严格的几何限制的部分略显差。

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