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Operational Impact Curve for Transportation System Relating Precipitation Intensity and Flood Depth to Vehicle Speed

机译:降水强度和洪水深度与车速相关的运输系统运行影响曲线

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This paper describes impact of flood depth on the transportation system in Houston Texas. Generally, bad weather simultaneously impacts on derivers, by reducing visibility, and also the conditions of vehicles and roadways. These effects cause reduction speed and increasing density in roadways, so transportation agencies are seeking to integrate (or consider) flood, and whether in general, into traffic operation in order to improve system functionality. It should be mentioned the driver's behavior is very sensitive to the environment they derive in; for instance in flood situation, some drivers cancel their trip, some other choose another pathway, that is usually longer than normal one and these new decisions will effect on the transportation system indirectly. In this study, the methods that have been used to relate precipitation intensity and flood depth to reduction in speed, are reviewed. Then, considering a case study of Houston, because of the commonness of flood events in that area, flood depth-velocity reduction analyses will be conducted for Highways. The developed curve will be used to link the flood model to a transportation model, which considers the effect of runoff/flood on the transportation parameters. The paper will also report existing curves and techniques to represent operational impact (e.g., possibility, traffic flow volumes) on transportation system.
机译:本文介绍了洪水深度对德克萨斯州休斯顿市交通系统的影响。通常,恶劣的天气同时会降低能见度以及车辆和道路的状况,同时对派生者产生影响。这些影响会导致道路速度降低和密度增加,因此运输机构正在寻求整合(或考虑)洪水,以及通常是否将其纳入交通运营中,以改善系统功能。应该提到的是,驾驶员的行为对其所处的环境非常敏感。例如,在洪灾情况下,一些驾驶员取消了旅行,另一些驾驶员选择了另一条道路,而该道路通常比正常道路更长,而这些新的决定将间接影响交通运输系统。在这项研究中,回顾了已用于将降水强度和洪水深度与速度降低相关联的方法。然后,考虑休斯顿的案例研究,由于该地区洪水事件的普遍性,将对高速公路进行洪水深度-速度降低分析。所开发的曲线将用于将洪水模型与运输模型链接,该模型考虑了径流/洪水对运输参数的影响。该文件还将报告现有曲线和技术,以表示对运输系统的运营影响(例如,可能性,交通流量)。

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