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Dam-Break Wave Fronts in Vegetated Wetlands

机译:植被湿地的大坝断裂波前沿

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As wetlands are increasingly used worldwide for environmental benefits, wetland hydraulics and vegetation resistance parameters have become extensively studied subjects. Vegetation resistance parameters are valuable not just for the design and operation of treatment wetlands, but also for continuous monitoring of the health of the vegetation. A method is introduced in this paper to calculate basic vegetation resistance parameters using the shape of the wave front, and particularly the relatively steep gradient, observed during sudden discharges into wetlands. Vegetation resistance, its variation over the depth, and the level of turbulence dictate the shape of the wave front. Field experiments were carried out in storm water treatment areas (STAs) in south Florida managed by the South Florida Water Management District (SFWMD) to collect data on the movement and the shape of the wave front. Results of the experiment include water surface profiles of the steep wave fronts observed during the movement of the front. Mass balance conditions at the leading edge of the wave front were used to develop approximate values of vegetation resistance in terms of hydraulic conductivity or transmissivity. The results show that the transmissivities obtained using the method agree with the transmissivities obtained using generated water waves.
机译:由于湿地越来越多地用于全球环境效益,湿地液压和植被抗性参数已成为广泛研究的受试者。植被抗性参数不仅适用于治疗湿地的设计和运营,还具有持续监测植被的健康状况。在本文中引入了一种方法,以使用波前的形状,特别是相对陡峭的梯度来计算基本的植被电阻参数,在突然放电到湿地时观察到。植被抵抗,其在深度的变化,湍流水平决定了波前的形状。现场实验在南佛罗里达州南佛罗里达州的南佛罗里达州(SFWMD)中进行的田间实验进行,以收集关于波浪前沿的运动和形状的数据。实验结果包括在前面的运动期间观察到的陡波前面的水表面轮廓。波前沿的质量平衡条件用于在液压导电性或透射率方面发育植被抗性的近似值。结果表明,使用该方法获得的透射率与使用产生的水波获得的透射率一致。

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