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Impact of Rainfall Data Source on Hydrologic and Water Quality Model Response of a Coastal PlainWatershed

机译:降雨数据源对沿海平坦水的水文水质模型反应的影响

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Hydrologic and water quality models are very sensitive to input parameter values, especially precipitation input data. With several different sources of precipitation data now available, it is quite difficult to determine which source is most appropriate under various circumstances. We used several sources of rainfall data in this study including single gauge rainfall data located outside the watershed boundary, and next generation radar (NEXRAD) rainfall data with different corrections, to examine the impact of such sources on Soil and Water Assessment Tool (SWAT) model streamflow predictions for a 50 km2 watershed located in the coastal plain of Maryland. For a watershed of that size with annual average precipitation of 43 inches, at least 3 raingauges within the watershed would reduce the percentage error in measured average watershed rainfall amounts to less than 23% (for 0.5 inch storm events). The larger the amount of storm rainfall the less error was associated with its measurement. Model simulation results indicated that distance and location of the single rain gauge located outside the watershed boundary has a significant impact in simulating hydrologic and water quality response of the watershed in the temperate region of Maryland. In the absence of a spatially representative network of rain gauges within the watershed, NEXRAD data produced more accurate estimates of streamflow than using single gage data. This study concludes that one has to be mindful of the source and methods of interpolation of rainfall data for input into hydrologic and water quality models if simulation accuracies are desired.
机译:水文和水质模型对输入参数值非常敏感,特别是降水输入数据。现在可以使用几种不同的降水数据来源,很难确定在各种情况下最适合的来源。我们在本研究中使用了几种降雨数据来源,包括位于流域边界外的单个仪表降雨数据,下一代雷达(Nexrad)降雨数据具有不同的矫正,以研究这些来源对土壤和水评估工具的影响(SWAT)位于马里兰州沿海平原的50平方公司的模型流式预测。对于每年平均降水量为43英寸的分水岭,流域内至少3个raingauges会将测量的平均水平降雨量的百分比减少到小于23%(对于0.5英寸的风暴事件)。风暴降雨量越大,误差越短与其测量有关。模型仿真结果表明,位于流域边界以外的单雨压仪的距离和位置对模拟马里兰州温带地区流域的水文和水质应对产生了重大影响。在流域内的雨量仪的空间代表性网络的情况下,Nexrad数据产生的流流量比使用单个量具数据更准确地估计。本研究结论,如果需要仿真精度,必须注意进入水文和水质模型的降雨数据的源头和方法。

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