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Safety Evaluation and Adjustment of Superelevation Design Guides for Horizontal Curves Based on Reliability Analysis

机译:基于可靠性分析的水平曲线超高设计指南的安全性评估与调整

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In general, the use of superelevation and changes in a road's transverse slope are typically based on the road's design speed to provide safety and comfort for a vehicle driving on a horizontal curve. However, due to the difference between operating and design speeds, there has always been uncertainty in determining the margin of safety using superelevation. This paper discusses the assessment of the safety margins obtained from the application of superelevation in horizontal-curve design. The assessment uses geometric design guides and a reliability index to determine any uncertainties in the design parameters. In addition, adjusted design charts of superelevation values related to the radius of horizontal curves at various levels of probability of noncompliance are provided. The results show that the adjusted superelevation values are generally greater than those derived from current standards. The adjusted design charts can help designers select an appropriate superelevation value for a particular horizontal curve for highways that have geometric constraints. These adjusted charts may also aid designers in predicting the consequences and safety margins associated with the selection of superelevation alternatives required to approve geometric designs that involve violations of the standard requirements due to environmental constraints. (C) 2017 American Society of Civil Engineers.
机译:通常,超高的使用和道路横向坡度的变化通常基于道路的设计速度,以为在水平弯道上行驶的车辆提供安全性和舒适性。但是,由于运行速度和设计速度之间的差异,使用超高确定安全裕度始终存在不确定性。本文讨论了在水平曲线设计中应用超高获得的安全裕度的评估。评估使用几何设计指南和可靠性指标来确定设计参数中的任何不确定性。此外,还提供了在各种不合规概率水平下与水平曲线的半径相关的超高值的调整设计图。结果表明,调整后的超高值通常大于从当前标准得出的值。调整后的设计图可以帮助设计人员为具有几何约束的高速公路的特定水平曲线选择合适的超高值。这些调整后的图表还可以帮助设计人员预测与批准因涉及环境限制而违反标准要求的几何设计所需的超高替代方案的选择有关的后果和安全裕度。 (C)2017年美国土木工程师学会。

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