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Satellite-based analysis of recent trends in the ecohydrology of a semi-arid region

机译:基于卫星的半干旱地区生态水文学最新趋势分析

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We present a regional framework for an integrated and spatiotemporally distributed assessment of human-induced trends in the hydrology and the associated ecological health of a semi-arid basin where both human activities (i.e. agriculture) and natural ecosystems are highly groundwater dependent. To achieve this, we analysed the recent trends (from year 2000 to 2010) in precipitation, evapotranspiration (actual and potential) and vegetation greenness (i.e. NDVI) using a combination of satellite and groundbased observations. The trend assessment was applied for the semi-arid Konya Basin (Turkey), one of the largest endorheic basins in the world. The results revealed a consistent increasing trend of both yearly evapotranspiration (totally 63 MCM yr~(?1) from croplands) and mean NDVI (about 0.004 NDVI yr~(?1) in irrigated croplands), especially concentrating in the plain part of the basin, while no significant trends were observed for the precipitation and potential evapotranspiration variables. On the contrary, a consistent decreasing trend of both yearly evapotranspiration (totally ?2.1 MCM yr~(?1)) and mean NDVI (?0.001 NDVI yr~(?1)) was observed in the wetlands, which also cannot be explained by trends in precipitation and potential evapotranspiration. The emerging picture suggest that the greening trend of the vegetation and increasing of evapotranspiration in the plain are related to land cover changes (i.e. conversion into irrigated croplands) and to the intensification of the supplementary irrigation for agriculture, which in turn caused drying out of some wetlands and the natural vegetation which mostly depend on the groundwater, the main source of irrigation water as well. Our study presented an example of the utility of spatially and temporally continuous RS data in assessing the regional trends in hydrological and ecological variables and their interactions in a spatially distributed manner in a semi-arid region, which can also be adapted to other regions. Such spatiotemporally distributed analysis at the basin level is particularly important considering that most of the water management interventions also take place at this scale.
机译:我们提出了一个区域框架,以便对人类活动(即农业)和自然生态系统都高度依赖地下水的半干旱盆地的水文趋势和相关的生态健康进行综合和时空分布的评估。为了实现这一目标,我们结合卫星和地面观测资料分析了降水,蒸散量(实际和潜在)和植被绿色度(即NDVI)的最新趋势(从2000年到2010年)。趋势评估已应用于半干旱的科尼亚盆地(土耳其),这是世界上最大的背胶盆地之一。结果表明,每年的蒸散量(来自农田的蒸散量总计为63 MCM yr〜(?1))和平均NDVI(灌溉农田的平均NDVI约为0.004 NDVI yr〜(?1))呈持续增加的趋势,特别是集中在平原地区。盆地,但没有观察到降水和潜在蒸散量的显着趋势。相反,在湿地中观测到了年蒸散量(总计为?2.1 MCM yr〜(?1))和平均NDVI(均值为?0.001 NDVI yr〜(?1))的持续下降趋势,这也不能用以下方式解释:降水和潜在蒸散的趋势。新兴的图片表明,平原上植被的绿化趋势和蒸散量的增加与土地覆盖的变化(即转变为灌溉农田)和农业补充灌溉的集约化有关,这反过来又导致了一些地区的干旱。湿地和自然植被主要依赖于地下水,这也是灌溉水的主要来源。我们的研究提供了一个空间和时间连续的遥感数据在评估半干旱地区的水文和生态变量及其空间分布趋势的区域趋势中的效用的例子,该地区也可以适应其他地区。考虑到大多数水管理干预措施也是在这一规模上进行的,因此在流域层面进行这种时空分布的分析尤为重要。

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