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Testing Evapotranspiration Estimates Based on MODIS Satellite Data in the Assessment of the Groundwater Recharge of Karst Aquifers in Southern Italy

机译:基于Modis卫星数据测试蒸发估计,评估意大利喀斯特含水层的地下水充电

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摘要

In many Italian regions, and particularly in southern Italy, karst aquifers are the main sources of drinking water and play a crucial role in the socio-economic development of the territory. Hence, estimating the groundwater recharge of these aquifers is a fundamental task for the proper management of water resources, while also considering the impacts of climate changes. In the southern Apennines, the assessment of hydrological parameters that is needed for the estimation of groundwater recharge is a challenging issue, especially for the spatial and temporal inhomogeneity of networks of rain and air temperature stations, as well as the variable geomorphological features and land use across mountainous karst areas. In such a framework, the integration of terrestrial and remotely sensed data is a promising approach to limit these uncertainties. In this research, estimations of actual evapotranspiration and groundwater recharge using remotely sensed data gathered by the Moderate Resolution Imaging Spectrometer (MODIS) satellite in the period 2000–2014 are shown for karst aquifers of the southern Apennines. To assess the uncertainties affecting conventional methods based on empirical formulas, the values estimated by the MODIS dataset were compared with those calculated by Coutagne, Turc, and Thornthwaite classical empirical formulas, which were based on the recordings of meteorological stations. The annual rainfall time series of 266 rain gauges and 150 air temperature stations, recorded using meteorological networks managed by public agencies in the period 2000–2014, were considered for reconstructing the regional distributed models of actual evapotranspiration (AET) and groundwater recharge. Considering the MODIS AET, the mean annual groundwater recharge for karst aquifers was estimated to be about 448 mm∙year−1. In contrast, using the Turc, Coutagne, and Thornthwaite methods, it was estimated as being 494, 533, and 437 mm∙year−1, respectively. The obtained results open a new methodological perspective for the assessment of the groundwater recharge of karst aquifers at the regional and mean annual scales, allowing for limiting uncertainties and taking into account a spatial resolution greater than that of the existing meteorological networks. Among the most relevant results obtained via the comparison of classical approaches used for estimating evapotranspiration is the good matching of the actual evapotranspiration estimated using MODIS data with the potential evapotranspiration estimated using the Thornthwaite formula. This result was considered linked to the availability of soil moisture for the evapotranspiration demand due to the relevant precipitation in the area, the general occurrence of soils covering karst aquifers, and the dense vegetation.
机译:在许多意大利地区,特别是在意大利南部,喀斯特含水层是饮用水的主要来源,在境内的社会经济发展中发挥至关重要的作用。因此,估计这些含水层的地下水充电是适当管理水资源的基本任务,同时也考虑了气候变化的影响。在南部亚平宁山脉中,估计地下水充值所需的水文参数是一个具有挑战性的问题,特别是对于雨水和空气温度站网络的空间和时间不均匀性以及可变地貌特征和土地利用跨越山区喀斯特地区。在这样的框架中,陆地和远程感测数据的整合是一个有希望限制这些不确定性的方法。在该研究中,在2000-2014期间,使用中度分辨率成像光谱仪(MODIS)卫星收集的远程感测数据的实际蒸发和地下水补给的估计显示为南部亚平宁的喀斯特含水层。为了评估影响基于经验性公式的常规方法的不确定性,将Modis数据集估计的值与由Coutagne,Turoc和Thornthwaite经典经验公式计算的值进行比较,这是基于气象站的记录。在2000 - 2014年期间,使用公共机构管理的气象网络记录的266张雨量时间系列和150个空气温度站,被认为重建了实际蒸散(AET)和地下水补给的区域分布式模型。考虑到MODIS AET,喀斯特含水层的平均年下地下水补给估计为约448毫米‰-1。相比之下,使用Turoc,Coutagne和Thornthwaite方法,估计分别为494,533和437 mm∙年-1。所获得的结果开辟了新的方法论,用于评估区域和平均年度的喀斯特含水层的地下水充电,允许限制不确定性,并考虑到现有气象网络的空间分辨率。在通过用于估计蒸散的经典方法比较获得的最相关结果中,使用MODIS数据估计的实际蒸发术的良好匹配,该蒸散具有使用荆棘龙岩配方估计的潜在蒸发。由于该地区的相关降水导致蒸发需求的蒸散需求,这种结果被认为是有关的,因此覆盖喀斯特含水层的土壤和茂密的植被。

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