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首页> 外文期刊>Journal of Transportation Engineering >Modeling 85th Percentile Speed Using Spatially Evaluated Free-Flow Vehicles for Consistency-Based Geometric Design
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Modeling 85th Percentile Speed Using Spatially Evaluated Free-Flow Vehicles for Consistency-Based Geometric Design

机译:基于空间一致性的几何设计,使用空间评估的自由流车辆建模85%的速度

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摘要

This paper investigates the free-flow condition suitable for four-lane divided highways and proposes spatial free-flow speed-based operating speed prediction models. The 85th percentile speed (V85) of spatially evaluated free-flow vehicles (passenger car, light commercial vehicle, and heavy commercial vehicle) at the curve center were analyzed with respect to various geometric parameters to develop these models. Among various multiple linear regression techniques explored, the backward elimination method was found to be the best for the adopted data. The curve length (CL), deflection angle (Delta), and preceding tangent length (PTL) were identified as the explanatory variables of the developed models. These models were validated for three different sites located in the western and northeastern parts of India. The explanatory variables Delta and CL can indicate curve appearance; this is in conformation with the design guideline's recommendation of adjusting Delta and CL for a directional and smooth appearance. Therefore, the proposed models can be used to integrate the quantitative and qualitative guidelines for horizontal curve design. Further, they support the design guidelines' recommendation to avoid a longer tangent prior to a sharp curve. Sensitivity analysis indicated the passenger car (PC) as the most critical vehicle category. Hence, the speed prediction model of PC was used for developing the nomograms for consistency-based geometric design of horizontal curves along four-lane divided highways.
机译:本文研究了适用于四车道划分高速公路的自由流动条件,并提出了基于空间自由流动速度的运行速度预测模型。针对各种几何参数,分析了在曲线中心进行空间评估的自由流动车辆(客车,轻型商用车和重型商用车)的第85个百分位速度(V85),以开发这些模型。在探索的各种多元线性回归技术中,发现后向消除方法最适合采用的数据。曲线长度(CL),偏转角(Delta)和先前切线长度(PTL)被确定为开发模型的解释变量。这些模型已针对位于印度西部和东北部的三个不同地点进行了验证。解释变量Delta和CL可以指示曲线外观。这符合设计指南中建议的调整Delta和CL的建议,以实现定向和平滑的外观。因此,所提出的模型可用于整合水平曲线设计的定量和定性指南。此外,它们支持设计指南的建议,以避免在出现尖锐曲线之前较长的切线。敏感性分析表明,乘用车(PC)是最关键的车辆类别。因此,使用PC的速度预测模型来开发诺模图,以进行基于一致性的四车道分割公路水平曲线的几何设计。

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