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首页> 外文期刊>Hydrology and Earth System Sciences >Modelling stream flow and quantifying blue water using a modified STREAM model for a heterogeneous, highly utilized and data-scarce river basin in Africa
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Modelling stream flow and quantifying blue water using a modified STREAM model for a heterogeneous, highly utilized and data-scarce river basin in Africa

机译:利用非均匀,高度利用和数据稀缺河流域的改进流模型建模流流程和量化蓝水

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Integrated water resources management is a combination of managing blue and green water resources. Often the main focus is on the blue water resources, as information on spatially distributed evaporative water use is not as readily available as the link to river flows. Physically based, spatially distributed models are often used to generate this kind of information. These models require enormous amounts of data, which can result in equifinality, making them less suitable for scenario analyses. Furthermore, hydrological models often focus on natural processes and fail to account for anthropogenic influences. This study presents a spatially distributed hydrological model that has been developed for a heterogeneous, highly utilized and data-scarce river basin in eastern Africa. Using an innovative approach, remote-sensing-derived evapotranspiration and soil moisture variables for 3 years were incorporated as input data into the Spatial Tools for River basin Environmental Analysis and Management (STREAM) model. To cater for the extensive irrigation water application, an additional blue water component (iQ/isubb/sub) was incorporated in the STREAM model to quantify irrigation water use. To enhance model parameter identification and calibration, three hydrological landscapes (wetlands, hillslope and snowmelt) were identified using field data. The model was calibrated against discharge data from five gauging stations and showed good performance, especially in the simulation of low flows, where the Nash–Sutcliffe Efficiency of the natural logarithm (iE/isubns_ln/sub) of discharge were greater than 0.6 in both calibration and validation periods. At the outlet, the iE/isubns_ln/sub coefficient was even higher (0.90). During low flows, iQ/isubb/sub consumed nearly 50% of the river flow in the basin. The iQ/isubb/sub model result for irrigation was comparable to the field-based net irrigation estimates, with less than 20% difference. These results show the great potential of developing spatially distributed models that can account for supplementary water use. Such information is important for water resources planning and management in heavily utilized catchment areas. Model flexibility offers the opportunity for continuous model improvement when more data become available.
机译:综合水资源管理是管理蓝绿水资源的组合。通常,主要重点是在蓝色水资源上,因为关于空间分布的蒸发水的信息并不像河流流量的链接那样容易获得。物理上,空间分布式模型通常用于生成这种信息。这些模型需要大量数据,这可能导致平等性,使它们不太适合场景分析。此外,水文模型通常专注于自然过程,并且未能考虑人为的影响。本研究提出了一种空间分布的水文模型,该模型已经为东非的异质,高度利用和数据稀缺的河流流域开发。使用创新方法,遥感衍生的蒸发和土壤湿度变量3年被纳入了进入河流环境分析和管理(流)模型的空间工具。为了迎合广泛的灌溉水应用,将额外的蓝水分( Q <亚> b )纳入流模型中以量化灌溉用水。为了提高模型参数识别和校准,使用现场数据识别三种水文景观(湿地,山坡和雪花)。该模型从五个测量站进行了排出数据,并显示出良好的性能,特别是在低流量的模拟中,其中天然对数的纳什 - Sutcliffe效率( e ns_ln 在校准和验证期间,放电大于0.6。在出口处, e ns_ln 系数甚至更高(0.90)。在低流量期间, q b 在盆地中消耗近50%的河流流量。 Q b 灌溉的模型结果与基于现场的净灌溉估计相当,差异小于20%。这些结果表明,开发可用于补充用水的空间分布模型的巨大潜力。此类信息对于大量利用集水区的水资源规划和管理是重要的。模型灵活性为在更多数据可用时提供了连续模型改进的机会。

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