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Development and testing of a large, transportable rainfall simulator for plot-scale runoff and parameter estimation

机译:用于绘制尺度径流和参数估计的大型可运输降雨模拟器的开发和测试

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There is increased interest in the interplay between vegetation conditions and overland flow generation. The literature is unclear on this relationship, and there is little quantitative guidance for modeling efforts. Therefore, experimental efforts are needed, and these call for a lightweight transportable plot-scale (10 m2) rainfall simulator that can be deployed quickly and quickly redeployed over various vegetation cover conditions. Accordingly, a variable-intensity rainfall simulator and collection system was designed and tested in the laboratory and in the field. The system was tested with three configurations of common pressure washing nozzles producing rainfall intensities of 62, 43, and 32 mm h-1 with uniformity coefficients of 76, 65, and 62%, respectively, over a plot of 15.12 m2. Field tests were carried out on a grassy field with silt–loam soil in Orroli, Sardinia, in July and August 2010, and rainfall, soil moisture, and runoff data were collected. The two-term Philip infiltration model was used to find optimal values for the saturated hydraulic conductivity of the soil surface and bulk soil, soil water retention curve slope, and air entry suction head. Optimized hydraulic conductivity values were similar to both the measured final infiltration rate and literature values for saturated hydraulic conductivity. This inexpensive (less than USD 1000) rainfall simulator can therefore be used to identify field parameters needed for hydrologic modeling.
机译:对植被条件与陆陆流发电之间的相互作用有所增加。这些关系尚不清楚文献,并且对建模努力进行了很小的量化指导。因此,需要实验努力,并且这些呼吁轻量级可移动绘图(> 10平方米)降雨模拟器,可以快速,快速重新部署在各种植被覆盖条件下。因此,在实验室和现场设计和测试了可变强度降雨模拟器和收集系统。该系统用三种配置的公共压力洗涤喷嘴构造,其产生62,43和32mm H-1的均匀系数,分别在15.12m 2的图中分别具有76,65和62%的均匀系数。在2010年7月和2010年8月,撒丁岛淤泥土壤的草地上进行了现场测试,并收集了降雨,土壤水分和径流数据。两期菲利普渗透模型用于寻找土壤表面和散装土壤,土壤水保留曲线坡度和空气进入吸头的饱和液压导电性的最佳值。优化的液压导电性值与测量的最终渗透速率和用于饱和液压导电性的文献值类似。因此,这种廉价(少于USD 1000)降雨模拟器可以用于识别水文建模所需的现场参数。

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