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A Fully Distributed Implementation Of Mean Annual Streamflow Regional Regression Equations

机译:平均年流量区域回归方程的完全分布式实现

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Estimates of mean annual streamflow are needed for a variety of hydrologic assessments. Away from gage locations, regional regression equations that are a function of upstream area, precipitation, and temperature are commonly used. Geographic information systems technology has facilitated their use for projects, but traditional approaches using the polygon overlay operator have been too inefficient for national scale applications. As an alternative, the Elevation Derivatives for National Applications (EDNA) database was used as a framework for a fully distributed implementation of mean annual streamflow regional regression equations. The raster "flow accumulation" operator was used to efficiently achieve spatially continuous parameterization of the equations for every 30 m grid cell of the conterminous United States (U.S.). Results were confirmed by comparing with measured flows at stations of the Hydro-Climatic Data Network, and their applications value demonstrated in the development of a national geospatial hydropower assessment. Interactive tools at the EDNA website make possible the fast and efficient query of mean annual streamflow for any location in the conterminous U.S., providing a valuable complement to other national initiatives (StreamStats and the National Hydrography Dataset Plus).
机译:各种水文评估都需要估算年平均流量。除了量规位置,通常使用区域回归方程,该方程是上游面积,降水量和温度的函数。地理信息系统技术促进了它们在项目中的使用,但是使用多边形覆盖运算符的传统方法对于国家级应用来说效率太低。作为替代方案,国家应用高程导数(EDNA)数据库被用作完全分布式实现平均年流量区域回归方程的框架。栅格“流量累积”运算符用于有效地实现美国本土(U.S.)每30 m网格单元的方程式在空间上连续的参数化。通过与水文气候数据网各站的实测流量进行比较,证实了结果,其应用价值在制定国家地理空间水电评估中得到了证明。 EDNA网站上的互动工具可以快速有效地查询美国本土附近任何地方的年均流量,为其他国家计划(StreamStats和National Hydrography Dataset Plus)提供了宝贵的补充。

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