首页> 外文期刊>Hydrological processes >Measuring water availability with limited ground data: assessing the feasibility of an entirely remote-sensing-based hydrologic budget of the Rufiji Basin, Tanzania, using TRMM, GRACE, MODIS, SRB, and AIRS
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Measuring water availability with limited ground data: assessing the feasibility of an entirely remote-sensing-based hydrologic budget of the Rufiji Basin, Tanzania, using TRMM, GRACE, MODIS, SRB, and AIRS

机译:测量地面有限的水资源数据:一个完全的可行性评估remote-sensing-based水文预算的Rufiji盆地、坦桑尼亚、利用TRMM、优雅、MODIS,SRB和播出

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摘要

This study explores the feasibility of an entirely satellite remote sensing (RS)-based hydrologic budget model for a ground data-constrained basin, the Rufiji basin in Tanzania, from the balance of runoff (Q), precipitation (P), storage change (S), and evapotranspiration (ET). P was determined from the Tropical Rainfall Measuring Mission, S from the Gravity Recovery and Climate Experiment, and ET from the Moderate Resolution Imaging Spectroradiometer, the surface radiation budget, and the Atmosphere Infrared Radiation Sounder. Q was estimated as a residual of the water balance and tested against measured Q for a sub-basin of the Rufiji (the Usangu basin) where ground measurements were available (R-2=0.58, slope=1.9, root mean square error=29 mm/month, bias=14%). We also tested a geographical information system (GIS)-driven (ArcCN-runoff) runoff model (R-2=0.64, slope=0.43, root mean square error=39 mm/month). We conducted an error propagation analysis from each of the model's hydrologic components (P, ET, and S). We find that the RS-based model amplitude is most sensitive to ET and slightly less so to P, whereas the model's seasonal trends are most sensitive to S. Although RS-GIS-driven models are becoming increasingly used, our results indicate that long-term water resource assessment policy and management may be more appropriate than instantaneous' or short-term water resource assessment. However, our analyses help develop a series of tools and techniques to progress our understanding of RS-GIS in water resource management of data-constrained basins at the level of a water resource manager. Copyright (c) 2012 John Wiley & Sons, Ltd.
机译:本研究探索了一种完全的可行性卫星遥感(RS)的水文预算模型地面data-constrained盆地,Rufiji盆地在坦桑尼亚,从平衡径流(Q),降水(P)、存储改变(年代),蒸散(ET)。从热带降雨测量确定任务,从重力恢复和气候中等分辨率的实验,等成像光谱仪,表面辐射预算,大气红外辐射测深仪。水平衡测试和对测量Qsub-basin Rufiji (Usangu盆地)地面测量可用(r2 = 0.58,斜率= 1.9,均方根误差= 29毫米/月,偏见= 14%)。信息系统(GIS)简况(ArcCN-runoff)径流模型(r2 = 0.64,斜率= 0.43,根的意思平方误差= 39毫米/月)。传播从每个模型的分析水文组件(P等),我们发现RS-based模型振幅最大敏感等,P,略低于而模型的季节性趋势敏感的美国虽然RS-GIS-driven模型越来越多的使用,我们的结果表明长期的水资源评估政策和管理可能更为恰当瞬时”或短期的水资源评估。我们的一系列工具和技术进展理解RS-GIS水资源管理的data-constrained盆地资源管理器的水。2012年约翰·威利& Sons有限公司

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