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首页> 外文期刊>Hydrological ProcHydrological Processesrnesses >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:用有限的地面数据测量水的可利用性:使用TRMM,GRACE,MODIS,SRB和AIRS评估坦桑尼亚Rufiji盆地完全基于遥感的水文预算的可行性

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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 (), precipitation (), storage change (Δ), and evapotranspiration (). was determined from the Tropical Rainfall Measuring Mission, Δ from the Gravity Recovery and Climate Experiment, and from the Moderate Resolution Imaging Spectroradiometer, the surface radiation budget, and the Atmosphere Infrared Radiation Sounder. was estimated as a residual of the water balance and tested against measured for a sub-basin of the Rufiji (the Usangu basin) where ground measurements were available ( = 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 ( = 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 (, , and Δ). We find that the RS-based model amplitude is most sensitive to and slightly less so to , whereas the model's seasonal trends are most sensitive to ∆. 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 © 2012 John Wiley & Sons, Ltd.
机译:这项研究从径流(),降水(),储量变化(Δ)的平衡中探索了完全基于卫星遥感(RS)的水文预算模型在地面数据受限盆地坦桑尼亚Rufiji盆地的可行性。和蒸散()。由热带雨量测量任务,重力恢复和气候实验的Δ,中分辨率成像光谱仪,表面辐射收支和大气红外辐射探测器确定。估计为水平衡的剩余量,并针对可进行地面测量的Rufiji(乌桑古盆地)次流域(measured = 0.58,坡度= 1.9,均方根误差= 29 mm /月,偏差)进行测试= 14%)。我们还测试了地理信息系统(GIS)驱动的(ArcCN径流)径流模型(= 0.64,坡度= 0.43,均方根误差= 39 mm /月)。我们对模型的每个水文分量(,和Δ)进行了误差传播分析。我们发现,基于RS的模型振幅对最为敏感,而对振幅则稍差,而模型的季节趋势对∆最敏感。尽管RS-GIS驱动的模型越来越多地使用,但我们的结果表明,长期水资源评估政策和管理可能比“即刻”或短期水资源评估更为合适。但是,我们的分析有助于开发一系列工具和技术,以在水资源管理者的水平上增进对RS-GIS在数据受限盆地的水资源管理中的理解。版权所有©2012 John Wiley&Sons,Ltd.

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  • 作者单位

    Oxford University Water Science Policy and Management International Graduate School Oxford University Centre for the Environment (OUCE) School of Geography and the Environment Oxford UK. Stanford University Stanford Technology Ventures Program (STVP) Department of Management Science and Engineering Huang Engineering Center Stanford CA USA;

    California Institute of Technology Jet Propulsion Laboratory Pasadena CA USA. Oxford University Environmental Change Institute School of Geography and Environment Oxford UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    remote sensing; hydrologic budget; Rufiji; Usangu; runoff; AIRS; SRB; TRMM; GRACE; MODIS;

    机译:遥感;水文收支;Rufiji;Usangu;径流;AIRS;SRB;TRMM;GRACE;MODIS;

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