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首页> 外文期刊>Hydrology and Earth System Sciences >Spatial characterization of long-term hydrological change in the Arkavathy watershed adjacent to Bangalore, India
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Spatial characterization of long-term hydrological change in the Arkavathy watershed adjacent to Bangalore, India

机译:印度班加罗尔毗邻的Arkavathy流域长期水文变化的空间特征

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The complexity and heterogeneity of human water use over large spatial areas and decadal timescales can impede the understanding of hydrological change, particularly in regions with sparse monitoring of the water cycle. In the Arkavathy watershed in southern India, surface water inflows to major reservoirs decreased over a 40-year period during which urbanization, groundwater depletion, modification of the river network, and changes in agricultural practices also occurred. These multiple, interacting drivers combined with limited hydrological monitoring make attribution of the causes of diminishing water resources in the watershed challenging and impede effective policy responses. To mitigate these challenges, we developed a novel, spatially distributed dataset to understand hydrological change by characterizing the residual trends in surface water extent that remain after controlling for precipitation variations and comparing the trends with historical land use maps to assess human drivers of change. Using an automated classification approach with subpixel unmixing, we classified water extent in nearly 1700?man-made lakes, or tanks, in Landsat images from?1973 to?2010. The classification results compared well with a reference dataset of water extent of tanks (iR/isup2/sup??=??0.95). We modeled the water extent of 42?clusters of tanks in a multiple regression on simple hydrological covariates (including precipitation) and time. Inter-annual variability in precipitation accounted for 63?% of the predicted variability in water extent. However, precipitation did not exhibit statistically significant trends in any part of the watershed. After controlling for precipitation variability, we found statistically significant temporal trends in water extent, both positive and negative, in 13?of the clusters. Based on a water balance argument, we inferred that these trends likely reflect a non-stationary relationship between precipitation and watershed runoff. Independently of precipitation, water extent increased in a region downstream of Bangalore, likely due to increased urban effluents, and declined in the northern portion of the Arkavathy. Comparison of the drying trends with land use indicated that they were most strongly associated with irrigated agriculture, sourced almost exclusively by groundwater. This suggests that groundwater abstraction was a major driver of hydrological change in this watershed. Disaggregating the watershed-scale hydrological response via remote sensing of surface water bodies over multiple decades yielded a spatially resolved characterization of hydrological change in an otherwise poorly monitored watershed. This approach presents an opportunity to understand hydrological change in heavily managed watersheds where surface water bodies integrate upstream runoff and can be delineated using satellite imagery.
机译:人用水在大型空间区域和二等时间尺度的复杂性和异质性可以妨碍对水文变化的理解,特别是在水循环稀疏监测的区域中。在印度南部的Arkavathy流域中,地表水流入主要水库在40年内减少了40年代,其中城市化,地下水耗尽,河流网络修改以及也发生了农业实践的变化。这些多个互动司机与有限的水文监测相结合,使水资源缩小的原因归因于流域挑战,妨碍有效的政策反应。为了减轻这些挑战,我们开发了一种新颖的空间分布的数据集,以了解水文变化,以了解地表水范围内的残留趋势,这些趋势在控制降水变化和历史土地利用地图的趋势来评估人类改变的趋势以评估人类的变化驱动因素。使用自动分类方法与Subpixel Unbixing,我们在近1700年的水范围内分类为1973年的Landsat图像中的人为湖泊或坦克,从?分类结果与罐的水范围的参考数据集进行比较( R 2 Δω= ?? 0.95)。我们在简单的水文协变量(包括沉淀)和时间内,在多次回归中建模了42℃的水分范围。降水的年间变异性占水范围内预测变异性的63%。然而,降水在流域的任何部分都没有表现出统计上的重要趋势。在控制降水变异性之后,我们发现水范围的统计学显着的时间趋势,既有正极和负数,13°?簇。基于水平争论,我们推断这些趋势可能反映了降水与流域径流之间的非稳定关系。独立于沉淀,水范围在班加罗尔下游的一个地区增加,可能由于城市污水增加,并且在阿克维斯北部的北部。与土地使用的干燥趋势的比较表明它们与灌溉农业最强烈相关,几乎完全由地下水采购。这表明地下水抽象是这种流域水文变化的主要驱动因素。通过多十年的地表水体的遥感分解流域水文反应产生了空间分辨的水文变化表征,在否则监测不足的流域中。这种方法提供了理解大量管理流域的水文变化的机会,其中地表水体整合上游径流,可以使用卫星图像划定。

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