Department of Traffic Engineering, University of Shanghai for Science and Technology, Shanghai, China.
Department of Transport & Planning, Delft University of Technology, Delft, Netherlands.
PLoS One. 2020 Aug 5;15(8):e0236922. doi: 10.1371/journal.pone.0236922. eCollection 2020.
The continuous flow intersection [CFI) is an unconventional intersection design which has been used in many cities all over the world. However, as an important parameter for the geometric design, signal timing, and operation evaluation, the saturation flow rate at CFI has not been carefully examined. In this paper, a saturation flow rate adjustment model for CFI intersections is established based on field data under the calculation framework of the HCM2016. Four movements related with CFI, namely the left-turn at the CFI approach, through movement at the CFI approach, left-turn at the pre-signal, and exit movement at the pre-signal, are discussed. The proposed model is validated and the relative error is less than 10%. The treatments to mitigate the negative impact on the saturation flow rate at the CFI are also recommended. The results show the saturation flow rate of the first three movements are decreased due to the CFI control. For the left-turn, through movement, and left-turn at the pre-signal, the degree of the reduction of the saturation flow rate are mainly related to the heavy vehicle ratio, the proportion of lane changing vehicles, and the length of displaced left-turn lanes, respectively.
连续流交叉口(CFI)是一种非传统的交叉口设计,已在世界上许多城市中得到应用。然而,作为几何设计、信号配时和运行评估的重要参数,CFI 的饱和流率尚未得到仔细检查。本文基于 HCM2016 的计算框架,利用现场数据建立了 CFI 交叉口的饱和流率调整模型。讨论了与 CFI 相关的四个运动,即 CFI 进口道的左转、通过 CFI 进口道的运动、预信号的左转和预信号的出口运动。所提出的模型经过验证,相对误差小于 10%。还推荐了减轻 CFI 处饱和流率负面影响的处理方法。结果表明,由于 CFI 控制,前三个运动的饱和流率降低。对于左转、通过运动和预信号的左转,饱和流率降低的程度主要与重车比例、变道车辆比例和左转车道的长度有关。