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Development of Safety Performance Functions for Restricted Crossing U-Turn Intersections

机译:制定限制交叉鼠标交叉口的安全性能功能

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摘要

Conventional intersection designs are known to be problematic and unreliable when handling the complexity associated with the heavy traffic volume and travel demand on today's roadways. Alternative innovative and safer designs such as the restricted crossing U-turn (RCUT) intersection can address these complex problems. However, there is still a gap in the literature concerning the safety performance analysis of RCUT intersections. Consistent with this goal, a comprehensive search was performed to identify RCUTs in the US and collect the relevant data needed to create appropriate safety performance functions and crash modification factors/functions for RCUTs. As such, different safety performance function (SPF) and crash modification factors/function (CMF) models were developed for signalized and unsignalized RCUTs with a focus on all crashes or fatal and injury crashes only, which span from complex models to relatively simple and easily implementable models. This can aid in creating a flexibility for safety agencies or officials that can prefer more complex models when sufficient data are available. Findings indicate that RCUTs have the potential to reduce the number of fatal and injury (F&I) crashes substantially at problematic locations and specifically illustrate that the selection of RCUT location depends significantly on the traffic volumes of major and minor approaches as well as their ratios. The developed SPFs and CMFs can be successfully used by transportation agencies to make informed decisions on the evaluation and justification of the installation of RCUTs.
机译:众所周知,当处理与当今道路上的交通量和旅行需求相关的复杂性时,常规的交叉点设计是有问题的和不可靠的。替代的创新和更安全的设计,如受限制的交叉U形(rcut)交叉点可以解决这些复杂的问题。然而,文献中仍然存在关于RCUT交叉口的安全性能分析的差距。与此目标一致,执行全面搜索以识别美国的RCUT,并收集为RCUT创建适当的安全性能函数和崩溃修改因子/函数所需的相关数据。因此,为信号和无罪的RCUT开发了不同的安全性能函数(SPF)和崩溃修改因子/功能(CMF)模型,其专注于所有崩溃或致命和伤害崩溃,这跨越复杂模型相对简单且容易可实现的模型。这有助于为安全机构或官员创造灵活性,当有足够的数据时,可以更喜欢更复杂的模型。结果表明,RCUT具有减少致命和损伤的数量(F&I)基本上存在的致命和伤害(F&I),具体而言,选择RCUT位置的选择取决于主要和次要方法的交通量和次要方法以及其比例。运输机构可以成功地使用所发达的SPFS和CMF,以了解RCUT安装的评估和理由的明智决策。

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