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Relationship between Lane Width and Safety along Urban Expressways in Shanghai

机译:上海市城市高速公路车道宽度与安全性的关系

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Safety issues along urban expressways have gained increasing attention for their direct impact on traffic operation, especially after a substantial amount of reconstruction work that altered the cross section designs to create additional travel lanes. Despite the obvious benefit of higher capacity, the safety effects related to the variety of lane widths are uncertain. This paper examines the impact of lane widths on crash frequency for various types of crashes based on field data obtained from the expressway system in Shanghai. Four data sets were manually collected, including crash data, traffic flow data, lane width data, and geometric design data. Based on these data, safety performance functions (SPFs) were developed using negative binomial regression models. Crash modification factors (CMFs) were built upon the SPFs to quantify the impact of various lane widths on crash frequency for each crash type of interest. Specifically, we considered five cases in this paper: total crashes, two-vehicle crashes, multivehicle crashes, crashes under congested flow conditions, and crashes under noncongested flow conditions. In addition, lane width data are grouped into three categories in our models: undersized lanes (average lane width = 3.25 m), standard-sized lanes (average lane width around 3.45 m), and oversized lanes (average lane width = 3.75 m). The standard-sized lanes are always found to have the lowest crash frequency among all five cases; both undersized and oversized lanes are found to increase crash frequency, that is, total crash frequency for undersized and oversized lanes increased by 1.9 times and 1.34 times, respectively.
机译:城市高速公路沿线的安全问题因其对交通运营的直接影响而受到越来越多的关注,尤其是在大量的重建工作改变了横断面设计以创造更多的行车道之后。尽管更高的通行能力具有明显的好处,但不确定与车道宽度变化有关的安全影响。本文基于从上海高速公路系统获得的现场数据,研究了车道宽度对各种类型的碰撞事故频率的影响。手动收集了四个数据集,包括碰撞数据,交通流数据,车道宽度数据和几何设计数据。基于这些数据,使用负二项式回归模型开发了安全绩效函数(SPF)。在SPF的基础上建立了碰撞修正因子(CMF),以针对感兴趣的每种碰撞类型量化各种车道宽度对碰撞频率的影响。具体来说,我们在本文中考虑了五种情况:总坠毁,两车坠毁,多车坠毁,拥塞流量条件下的崩溃以及非拥塞流量条件下的崩溃。此外,在我们的模型中,车道宽度数据分为三类:过小车道(平均车道宽度<= 3.25 m),标准车道(平均车道宽度约3.45 m)和过大车道(平均车道宽度> = 3.75) m)。在所有五种情况下,通常都会发现标准大小的车道发生事故的频率最低。发现过小和过大的车道都会增加碰撞频率,也就是说,过小和过大的车道的总碰撞频率分别增加了1.9倍和1.34倍。

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