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Winter problems on mountain passes - Implications for cost-benefit analysis

机译:冬季通行证上的冬季问题-成本效益分析的含义

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Cost-benefit analysis is a tool in government decision-making for determining the consequences of alternative uses of society's scarce resources. Such a systematic process of comparing benefits and costs was adopted in early years for transportation projects and it has been the subject of much refining over the years. There are still some flaws, however, in the application of the method. In this article we have studied the impact of weather conditions on traffic speed on low traffic roads often exposed to adverse weather. This is an issue not currently considered in the cost-benefit analysis of road projects. By using two analytical approaches structural equation modelling and classification and regression tree analysis the impact of the weather indicators temperature, wind speed, and precipitation on traffic speed has been quantified. The data relates to three winter Months on the European Route 6 road over the mountain pass Saltfjellet in Norway. Increase in wind speed, increase in precipitation and temperatures around freezing point all caused significant decrease in traffic speed in the case studied. If actions were taken to reduce the impact of adverse weather on traffic (e.g. by building a tunnel through the mountain) this study indicates that the road users would gain a total benefit of approximately 2,348,000 NOK (282,000 EUR) each winter at Saltfjellet if all the weather related benefits were included. We argue that this is a significant number that is highly relevant to include in CBAs. This applies both to the CBAs of new transportation projects as well as when resources are allocated for operation, maintenance, and monitoring of the existing transport systems. Including the weather related benefits would improve the application of CBA as a decision-making tool for policy makers. (C) 2015 Elsevier Ltd. All rights reserved.
机译:成本效益分析是政府决策中确定社会稀缺资源替代使用后果的工具。在运输项目的早期阶段就采用了这种比较收益和成本的系统方法,并且多年来一直是许多改进的主题。但是,该方法的应用仍然存在一些缺陷。在本文中,我们研究了天气条件对经常遭受不利天气影响的低交通量道路上交通速度的影响。在道路项目的成本效益分析中,目前尚未考虑此问题。通过使用两种分析方法,结构方程建模,分类和回归树分析对气象指标温度,风速和降水对交通速度的影响进行了量化。该数据与挪威萨尔特菲莱特山口上方的欧洲6号公路上三个冬月有关。在所研究的案例中,风速的增加,降水的增加以及冰点附近的温度都导致了交通速度的显着下降。如果采取措施减少不利天气对交通的影响(例如,通过修建穿越山地的隧道),则本研究表明,如果所有的话,Saltfjellet的道路使用者每年冬天将总共获得大约2,348,000 NOK(282,000 EUR)的收益。包括与天气有关的好处。我们认为,这是一个非常重要的数字,与CBA中包含的数字高度相关。这既适用于新运输项目的CBA,也适用于分配资源用于运营,维护和监视现有运输系统的情况。包括与天气有关的收益将改善CBA作为决策者决策工具的应用。 (C)2015 Elsevier Ltd.保留所有权利。

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