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A new experiments-based methodology to define the stability threshold for any vehicle exposed to flooding

机译:一种新的基于实验的方法,可为任何遭受洪灾的车辆定义稳定性阈值

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摘要

A vehicle exposed to flooding, after losing stability, becomes buoyant and may be washed away with potential injuries and fatalities. Such vehicles cause additional disruption to traffic that is already affected by flooding, which may lead to substantial indirect economic impact, especially in urban areas. Therefore, the analysis of the stability of vehicles exposed to flooding is important in order to make decisions to reduce damages and hazards. In this research, based on an experimental campaign that included a range of twelve car models, a new methodology to obtain the stability threshold for any real vehicle exposed to flooding is developed. A stability coefficient (SCmod) is derived with which the vehicles can be sorted by stability against water flows and their stability functions may be determined. The experiments were conducted with three different model scales (1:14, 1:18 and 1:24) and involved analysis of both friction and buoyancy effects, which made this the most comprehensive research study to date. This methodology enables the definition of a stable area in the flow depth-velocity domain for any real vehicle. A tool is provided that decision-makers in the field of urban flood risk management can employ and after defining a design vehicle they can obtain its corresponding stability threshold.
机译:遭受洪水破坏的车辆失去稳定性后,会浮起,并可能被冲走,并造成潜在的伤害和死亡。这些车辆对已经受到洪水影响的交通造成额外的干扰,这可能会导致巨大的间接经济影响,尤其是在城市地区。因此,对水浸车辆的稳定性进行分析对于制定减少损害和危害的决策很重要。在这项研究中,基于一项包括12种汽车模型的实验活动,开发了一种新的方法来获取任何遭受水淹的真实车辆的稳定性阈值。导出稳定性系数(SCmod),通过该系数可以对水流进行稳定性分类,从而确定车辆的稳定性函数。实验是使用三种不同的模型比例(1:14、1:18和1:24)进行的,涉及摩擦和浮力效应的分析,这使它成为迄今为止最全面的研究。这种方法可以在任何实际车辆的流动深度-速度域中定义稳定区域。提供了一种工具,供城市洪水风险管理领域的决策者使用,并且在定义设计工具后,他们可以获得其相应的稳定性阈值。

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