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Calibration of an oscillating nozzle-type rainfall simulator

机译:摆动喷嘴式降雨模拟器的校准

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摘要

Nozzle-type rainfall simulators are commonly used in hydrologic and soil erosion research. Simulated rainfall intensity, originating from the nozzle, increases as the distance between the point of measurement and the source is decreased. Hence, rainfall measured using rain gauges would systematically overestimate the rainfll received at the ground level. A simple model was developed to adjust rainfall measured anywhere under the simulator to plot-wide average rainfall at the ground level. Nozzle height, plot width, gauge diameter and height, and gauge location are required to compute this adjustment factor. Results from 15 runs at different rain intensities and durations, and with different rain gauge layouts, showed that a simple average of measured rain would overestimate the plot-wide rain by about 20 per cent. Using the adjustment factor to convert measured rainfall for individual gauges before averaging improved the estimate of plot-wide rainfall considerably. For the 15 runs considered, overall discrepancy between actual and measured rain is reduced to less than 1 per cent with a standard error of 0.97 mm. This model can be easily tested in the field by comparing rainfall depths of different sized gauges. With the adjustment factor they should all give very similar values.
机译:喷嘴型降雨模拟器通常用于水文和土壤侵蚀研究。源于喷嘴的模拟降雨强度随着测量点与源之间距离的减小而增加。因此,使用雨量计测得的降雨将系统性地高估地面接收到的降雨。开发了一个简单的模型,可以将模拟器下任何地方测得的降雨量调整为全地面范围的平均降雨量。计算此调整因子需要喷嘴高度,标绘宽度,标尺直径和高度以及标尺位置。在不同的降雨强度和持续时间下,以不同的雨量计布局进行的15次运行的结果表明,简单的实测雨量平均值会高估整个小区的雨量约20%。在平均之前,使用调整因子转换各个仪表的实测降雨量,可以大大改善整个地块的降雨量估算。对于所考虑的15次运行,实际雨量与实测雨量之间的总体差异减少到不足1%,标准误差为0.97 mm。通过比较不同规格雨量器的降雨深度,可以轻松地在野外对该模型进行测试。有了调整因子,它们都应该给出非常相似的值。

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