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Calibration and validation of a semi-distributed hydrological model in the Amur River Basin using remote sensing data

机译:使用遥感数据校准和验证Amur River盆地半分布水文模型

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As the tenth-largest river basin in the world and one of the largest in the Russian Federation, the Amur River basin's water resources have changed greatly in the last decades. More comprehensive understanding of hydrological process in the Amur River basin based on hydrological model is needed. With the increased availability of remotely sensed information, some hydrological variables assessed through remote measurements can be used to complement discharge data and a different respect of hydrological observations into the modelling process. In this paper, the calibration and validation of a semi-distributed hydrological model in the Amur River basin using remote sensing data were presented. The long-term hydrological processes of the Amur River basin for 2000-2013 was simulated based on Soil and Water Assessment Tool (SWAT) and the changes of the hydrological variables were analyzed. The total water storage change (TWSC) derived from the Gravity Recovery And Climate Experiment (GRACE), the actual evapotranspiration (ET) calculated using Moderate Resolution Imaging Spectroradiometer (MODIS) and advanced very high resolution radiometer (AVHRR) data, and multi-site river discharge data were used in the model calibration and validation. This study showed that the streamflow, evapotranspiration, surface runoff, soil water content and groundwater discharge into reach had all changed to varying degrees in Amur River basin during the period 2000-2013 under the influence of climate changes and human activities. Remotely sensed information was demonstrated useful in successful application of the model calibration and validation, and especially in reducing the equifinality for different parameters.
机译:作为世界十分之一的河流流域和俄罗斯联邦最大的河流流域之一,阿穆尔河流域的水资源在过去几十年中发生了很大变化。需要基于水文模型更全面了解Amur River盆地水文过程。随着远程感测信息的可用性增加,通过远程测量评估的一些水文变量可用于补充放电数据和水文观察的不同视觉观察到建模过程。本文介绍了使用遥感数据的Amur River盆地半分布水文模型的校准和验证。基于土壤和水评估工具(SWAT)模拟了2000-2013的Amur River盆地的长期水文过程,分析了水文变量的变化。从重力恢复和气候实验(GRACE),使用中分辨率成像光谱仪(MODIS)计算的实际蒸散量(ET)得出总蓄水变化(TWSC)先进甚高分辨率辐射计(AVHRR)数据,和多站点河流放电数据用于模型校准和验证。本研究表明,在气候变化和人类活动的影响下,在2000 - 2013年期间,流出,蒸散,表面径流,土壤水含量和地下水进入到达的变化到Amur River盆地的不同程度。在成功应用模型校准和验证方面,遥感信息证明是有用的,特别是在降低不同参数的平等性时。

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