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A comparative appraisal of hydrological behavior of SRTM DEM at catchment level

机译:流域水平上SRTM DEM水文行为的比较评价

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The Shuttle Radar Topography Mission (SRTM) data has emerged as a global elevation data in the past one decade because of its free availability, homogeneity and consistent accuracy compared to other global elevation dataset. The present study explores the consistency in hydrological behavior of the SRTM digital elevation model (DEM) with reference to easily available regional 20 m contour interpolated DEM (TOPO DEM). Analysis ranging from simple vertical accuracy assessment to hydrological simulation of the studied Maithon catchment, using empirical USLE model and semidistributed, physical SWAT model, were carried out. Moreover, terrain analysis involving hydrological indices was performed for comparative assessment of the SRTM DEM with respect to TOPO DEM. Results reveal that the vertical accuracy of SRTM DEM (+/- 27.58 m) in the region is less than the specified standard (+/- 16 m). Statistical analysis of hydrological indices such as topographic wetness index (TWI), stream power index (SPI), slope length factor (SLF) and geometry number (GN) shows a significant differences in hydrological properties of the two studied DEMs. Estimation of soil erosion potentials of the catchment and conservation priorities of microwatersheds of the catchment using SRTM DEM and TOPO DEM produce considerably different results. Prediction of soil erosion potential using SRTM DEM is far higher than that obtained using TOPO DEM. Similarly, conservation priorities determined using the two DEMs are found to be agreed for only 34% of microwatersheds of the catchment. ArcSWAT simulation reveals that runoff predictions are less sensitive to selection of the two DEMs as compared to sediment yield prediction. The results obtained in the present study are vital to hydrological analysis as it helps understanding the hydrological behavior of the DEM without being influenced by the model structural as well as parameter uncertainty. It also reemphasized that SRTM DEM can be a valuable dataset for hydrological analysis provided any error/uncertainty therein is being properly evaluated and characterized. (C) 2014 Elsevier B.V. All rights reserved.
机译:穿梭雷达地形任务(SRTM)数据在过去十年中已成为全球高程数据,这是因为与其他全球高程数据集相比,它的免费可用性,同质性和一致的准确性。本研究参考易于使用的区域20 m等高线插值DEM(TOPO DEM),探索了SRTM数字高程模型(DEM)在水文行为方面的一致性。使用经验的USLE模型和半分布式的物理SWAT模型,对从简单的垂直精度评估到所研究的Maithon流域的水文模拟进行了分析。此外,还进行了涉及水文指数的地形分析,以对SRTM DEM与TOPO DEM进行比较评估。结果表明,该区域的SRTM DEM的垂直精度(+/- 27.58 m)小于指定的标准(+/- 16 m)。对水文指数(如地形湿度指数(TWI),河流功率指数(SPI),坡长因子(SLF)和几何数(GN))的统计分析表明,这两个研究DEM的水文特性存在显着差异。用SRTM DEM和TOPO DEM估算流域的土壤侵蚀潜力和流域微流域的保护优先次序会产生截然不同的结果。使用SRTM DEM预测土壤侵蚀潜力远高于使用TOPO DEM预测土壤侵蚀潜力。同样,发现使用这两个DEM确定的保护重点仅针对流域微流域的34%。 ArcSWAT模拟显示,与沉积物产量预测相比,径流预测对两个DEM的选择较不敏感。本研究中获得的结果对于水文分析至关重要,因为它有助于理解DEM的水文行为,而不受模型结构和参数不确定性的影响。它还强调了SRTM DEM可以作为水文分析的有价值数据集,只要其中的任何错误/不确定性得到适当评估和表征即可。 (C)2014 Elsevier B.V.保留所有权利。

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