首页> 外文期刊>Journal of the American Water Resources Association >STORM RUNOFF PREDICTION BASED ON A SPATIALLY DISTRIBUTED TRAVEL TIME METHOD UTILIZING REMOTE SENSING AND GIS
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STORM RUNOFF PREDICTION BASED ON A SPATIALLY DISTRIBUTED TRAVEL TIME METHOD UTILIZING REMOTE SENSING AND GIS

机译:基于空间分布旅行时间方法的遥感和GIS暴雨径流预测

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摘要

In this study, remotely sensed data and geographic information system (GIS) tools were used to estimate storm runoff response for Simms Creek watershed in the Etonia basin in northeast Florida. Land cover information from digital orthophoto quarter quadrangles (DOQQ), and enhanced thematic mapper plus (ETM+) were analyzed for the years 1990, 1995, and 2000. The corresponding infiltration excess runoff response of the study area was estimated using the U.S. Department of Agriculture (USDA), Natural Resources Conservation Service Curve Number (NRCS-CN) method. A digital elevation model (DEMVGIS technique was developed to predict stream response to runoff events based on the travel time from each grid cell to the watershed outlet. A comparison of predicted to observed stream response shows that the model predicts the total runoff volume with an efficiency of 0.98, the peak flow rate at an efficiency of 0.85, and the full direct runoff hydro-graph with an average efficiency of 0.65. The DEM/GIS travel time model can be used to predict the runoff response of ungaged watersheds and is useful for predicting runoff hydrographs resulting from proposed large scale changes in the land use.
机译:在这项研究中,使用遥感数据和地理信息系统(GIS)工具估算佛罗里达州东北部Etonia盆地Simms Creek流域的暴雨径流响应。分别分析了1990年,1995年和2000年来自数字正射四分之一四边形(DOQQ)和增强型专题制图仪(ETM +)的土地覆盖信息。使用美国农业部估算了研究区域相应的入渗过量径流响应(USDA),自然资源保护服务曲线编号(NRCS-CN)方法。开发了一种数字高程模型(DEMVGIS技术),以基于从每个网格单元到集水区出口的行进时间来预测水流对径流事件的响应。将预测流与观测流响应进行比较,表明该模型可以高效地预测总径流量流速为0.98,峰值流速为0.85,完整的直接径流水位图的平均效率为0.65。DEM / GIS传播时间模型可用于预测非流域的径流响应,对预测由于土地利用的大规模变化而产生的径流水位图。

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