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Risk-based framework for accommodating uncertainty in highway geometric design

机译:适应公路几何设计不确定性的基于风险的框架

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The development of highway standard design models involves various assumptions regarding design inputs and the road environment. This paper suggests an improvement to the treatment of uncertainty in design inputs by replacing the current deterministic approach with a reliability-based framework. Reliability theory deals with the propagation of quantified variability in design inputs throughout the design process. In such a framework, each design output corresponds to a theoretical probability of noncompliance to design requirements. These probabilities can be used to assess and compare the a priori safety level associated with various design scenarios. This paper proposes that such a priori safety level of standard design outputs should be consistent and close to a prespecified target level. A set of methods is proposed to determine a target value for design safety. A general framework for calibrating standard design models is presented. To demonstrate the concept, the paper presents an application of the calibration framework to the standard design model of crest vertical curves. Calibrated design charts are constructed to yield a consistent design safety level.
机译:公路标准设计模型的开发涉及有关设计输入和道路环境的各种假设。本文提出了一种对设计输入不确定性处理的改进,方法是将当前的确定性方法替换为基于可靠性的框架。可靠性理论涉及整个设计过程中设计输入中量化变异性的传播。在这样的框架中,每个设计输出对应于不符合设计要求的理论概率。这些概率可用于评估和比较与各种设计方案相关的先验安全水平。本文提出,标准设计输出的先验安全级别应保持一致,并接近预定的目标级别。提出了一套确定设计安全性目标值的方法。提出了用于校准标准设计模型的通用框架。为了说明这一概念,本文提出了校准框架在波峰垂直曲线的标准设计模型中的应用。构造经过校准的设计图可产生一致的设计安全级别。

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