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Hydrodynamics of pedestrians' instability in floodwaters

机译:行人洪水中的流体动力学

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People's safety is the first objective to be fulfilled by flood risk mitigation measures, and according to existing reports on the causes of casualties, most of the fatalities are due to inappropriate behaviour such as walking or driving in floodwaters. Currently available experimental data on people instability in floodwaters suffer from a large dispersion primarily depending on the large variability of the physical characteristics of the subjects. This paper introduces a dimensionless mobility parameter theta(P) for people partly immersed in flood flows, which accounts for both flood and subject characteristics. The parameter theta(P) is capable of identifying a unique threshold of instability depending on a Froude number, thus reducing the scatter of existing experimental data. Moreover, a three-dimensional (3-D) numerical model describing the detailed geometry of a human body and reproducing a selection of critical pairs of water depth and velocity is presented. The numerical results in terms of hydrodynamic forces and force coefficients are analysed and discussed. Both the mobility parameter theta(P) and the numerical results hint at the crucial role of the Froude number and relative submergence as the most relevant dimensionless numbers to interpret the loss of stability. Finally, the mobility parameter theta(P) is compared with an analogous dimensionless parameter for vehicles' instability in floodwaters, providing a new contribution to support flood risk management and educating people.
机译:人们的安全是第一个通过洪水风险缓解措施实现的第一个目标,并根据现有的伤亡原因的报告,大多数死亡是由于在洪水中散步或驾驶等不恰当的行为。目前有关人民在洪水中不稳定的实验数据主要根据受试者物理特征的巨大可变性遭受大型色散。本文介绍了部分沉浸在洪水流动的人数无量纲的流动性参数θ(p),这涉及洪水和主体特征。参数Theta(P)能够根据FRoude号码识别不稳定性的唯一阈值,从而减少现有实验数据的散射。此外,介绍了描述人体的详细几何形状的三维(3-D)数值模型和再现临界水深和速度的选择。分析并讨论了流体动力力和力系数方面的数值结果。移动参数Theta(P)和数值结果暗示了Froude数和相对潜水的关键作用,作为解释稳定性损失的最相关的无量纲数。最后,将流动性参数θ(p)与洪水中的车辆不稳定的类似维度参数进行比较,为支持洪水风险管理和教育人员提供了新的贡献。

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