New hydrogeological results on the Groundwater Dependent Ecosystem of the Pilato Lake (Sibillini Mts, Central Italy)

IF 0.8 Q4 WATER RESOURCES
L. Martarelli, R. M. Gafà, F. La Vigna, G. Monti, A. Silvi
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Abstract

Located at an altitude of about 1950 m a.s.l. in a glacial cirque of Mount Vettore (Monti Sibillini National Park - Central Italy), Pilato Lake is one of the few glacial lakes existing in the Apennines. Due to the endemic presence of the crustaceous Chirocephalus marchesonii, the Pilato Lake was in the past mainly studied from the biological viewpoint, but hydrogeological information on this groundwater dependent ecosystem is scarce. Furthermore, for investigating the lake drying in the recent 2017, 2019 and 2020 summers, the seasonal lowering of lake levels during 2010, 2012 and 2014-2020 was reconstructed. It resulted that in the preseismic years, the lake emptying was slower than in the post-seismic time. It is then supposed that seismic quaking induced an increase in permeability and, consequently, increased infiltration velocity through the lake sustaining surficial (detrital and glacial) and/or bedrock deposits towards the subsurface. More frequent summer dryings of the lake are then supposed for the next future. The hydrogeological conceptual model of the study area showed that the refilling process of the lake is driven by snow and rain precipitations. The air temperatures during 2017-2020 and their effects on evaporation from lake and on actual evapotranspiration were estimated. The infiltration through sustaining sediments was calculated and the estimation with time of lake wet surface and lake volume variations, and then bulk permeability of sustaining sediments, were evaluated as well.
意大利中部Pilato湖地下水依赖生态系统水文地质新成果
皮拉托湖位于海拔约1950米的维特托雷山(蒙蒂西比利尼国家公园-意大利中部)的一个冰川圈内,是亚平宁山脉为数不多的冰川湖之一。由于皮拉多湖特有的甲壳类marchesonchirocephalus,以往对该湖的研究主要从生物学角度出发,但对该地下水依赖生态系统的水文地质资料较少。此外,为了调查2017年、2019年和2020年夏季湖泊的干枯情况,重建了2010年、2012年和2014-2020年夏季湖泊水位的季节性下降。结果表明,地震前湖泊排空速度比地震后慢。然后假定地震引起了渗透性的增加,从而增加了通过湖泊的渗透速度,使表层(碎屑和冰川)和/或基岩沉积向地下延伸。预计在未来,该湖将在夏季更频繁地干涸。研究区水文地质概念模型表明,湖泊的补给过程是由雨雪降水驱动的。估算了2017-2020年气温对湖泊蒸发量和实际蒸散量的影响。计算了支撑沉积物的入渗量,估算了湖泊湿面随时间的变化和湖泊体积的变化,并对支撑沉积物的总体渗透率进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.80
自引率
50.00%
发文量
36
审稿时长
8 weeks
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