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Operating speed prediction model as a tool for consistency based geometric design of four-lane divided highways

机译:运行速度预测模型作为基于一致性的四车道分割公路几何设计的工具

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Researchers have studied two-lane rural highways to predict the operating speed on horizontal curves and correlated it with safety. However, the driving characteristics of four-lane-divided highways are different. Weak lane discipline is observed in these facilities, which influences vehicle speed in adjacent lane or space. So, irrespective of its lane or lateral position, vehicles in four-lane divided highways are considered free flowing only when it maintains the minimum threshold headway from any lead vehicle. Examination of two conditions is proposed to ensure the free flow. Vehicles meeting both conditions, when tracked from the preceding tangent section till the centre of the horizontal curve, are considered as free flowing. The speed data of such free flowing passenger cars at the centre of eighteen horizontal curves on four-lane divided highways is analysed to develop a linear operating speed prediction model. The developed model depends on curve radius and preceding tangent length. The operating speed of passenger car in four-lane divided highways is influenced by horizontal curve of radius 360 m or less. Further, longer tangent would yield higher operating speed at the centre of the curve. Finally, two nomograms are suggested for conventional design, consistency based design and geometric design consistency evaluation of four-lane divided horizontal curves.
机译:研究人员研究了两车道的农村公路,以预测水平曲线上的行驶速度并将其与安全性相关联。但是,四车道划分的高速公路的驾驶特性是不同的。在这些设施中观察到较弱的车道纪律,这会影响相邻车道或空间中的车速。因此,无论其车道或侧向位置如何,只有在四车道划分的高速公路上,其车辆保持领先任何领先车辆的最小阈值车距时,才被视为自由流动。建议检查两个条件以确保自由流动。从前一个切线部分一直跟踪到水平曲线的中心,同时满足这两个条件的车辆将被视为自由流动。分析了在四车道划分的高速公路上十八条水平曲线的中心处这种自由流动的客车的速度数据,以建立线性运行速度预测模型。开发的模型取决于曲线半径和先前的切线长度。四车道划分的高速公路上乘用车的运行速度受半径为360 m以下的水平曲线的影响。此外,更长的切线将在曲线的中心产生更高的工作速度。最后,建议使用两个列线图进行常规设计,基于一致性的设计和四车道水平分割曲线的几何设计一致性评估。

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