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首页> 外文期刊>Journal of Modern Transportation >A comparative study on crash-influencing factors by facility types on urban expressway
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A comparative study on crash-influencing factors by facility types on urban expressway

机译:城市高速公路设施类型碰撞影响因素的比较研究

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摘要

Abstract This study aims at identifying crash-influencing factors by facility type of Nagoya Urban Expressway, considering the interaction of geometry, traffic flow, and ambient conditions. Crash rate (CR) model is firstly developed separately at four facility types: basic, merge, and diverge segments and sharp curve. Traffic flows are thereby categorized, and based on the traffic categories, the significances of factors affecting crashes are analyzed by principal component analysis. The results reveal that, the CR at merge segment is significantly higher than those at basic and diverge segments in uncongested flow, while the value is not significantly different at the three facility types in congested flow. In both un- and congested flows, sharp curve has the worst safety performance in view of its highest CR. Regarding influencing factors, geometric design and traffic flow are most significant in un- and congested flows, respectively. As mainline flow increases, the effect of merging ratio affecting crash is on the rise at basic and merge segments as opposed to the decreasing significance of diverging ratio at diverge segment. Meanwhile, longer acceleration and deceleration lanes are adverse to safety in uncongested flow, while shorter acceleration and deceleration lanes are adverse in congested flow. Due to its special geometric design, crashes at sharp curve are highly associated with the large centrifugal force and heavy restricted visibility.
机译:摘要本研究旨在根据名古屋市高速公路的设施类型,确定碰撞影响因素,同时考虑几何形状,交通流量和环境条件的相互作用。崩溃率(CR)模型首先是针对四种设施类型分别开发的:基本,合并和发散路段和尖锐曲线。由此对交通流进行分类,并基于交通类别,通过主成分分析来分析影响碰撞的因素的重要性。结果表明,在非拥堵流量中,合并段的CR显着高于基本段和发散段的CR,而在三种类型的拥堵流量中,该值没有显着差异。无论是在非拥堵流还是拥堵流中,鉴于其最高CR,陡峭曲线的安全性能都最差。关于影响因素,几何设计和交通流量分别在未拥堵和拥堵的流量中最为重要。随着干线流量的增加,合并比率对崩溃的影响在基本段和合并段上的增加,而不是在分散段上分散比的重要性降低。同时,较长的加减速通道不利于非拥堵流的安全性,而较短的加减速通道不利于拥堵流。由于其特殊的几何设计,在急转弯处的碰撞与较大的离心力和严重的受限可见性高度相关。

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