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Spatial and climatic characterization of three glacial stages in the Upper Krnica Valley, SE European Alps

机译:欧洲阿尔卑斯山上克尔尼察山谷三个冰川阶段的空间和气候特征

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摘要

The southeastern European Alps represent the spot where mean annual precipitation is at its highest in the entire Alpine chain. Accordingly, the glacial evolution here might have a different spatial and chronological pattern if compared with other alpine areas. This paper discusses geomorphological evidence of three glacial stages from the Krnica Valley in the Julian Alps of Slovenia, and is the first step towards a comprehensive palaeoglaciological studies in this alpine sector. Very well-preserved glacial landforms in the Upper Krnica Valley allowed the reconstruction of glacier surface topographies and corresponding equilibrium line altitudes (ELAs) by means of field-based geomorphological and sedimentological data and by using geospatial analysis. The uppermost frontal moraines belong to the Little Ice Age (LIA) and the corresponding ELA is estimated at 1973 m a.s.l. Other two stages with the ELA depressed by 50 m and 161 m compared to the LIA ELA, suggest early Holocene and Younger Dryas ages of the palaeoglaciers, respectively. This assumption ensues from absolute age datings and related ELA depressions observed elsewhere in the European Alps. The presence of buried ice under the debris in the Krnica cirque, imaged through geophysical investigations, point to peculiar microclimatic conditions able to preserve relict glacier ice. This is favoured by the recursive presence of snow on the ground caused by the extreme summer shading and the significant winter snow-recharge triggered by snowblow and avalanche feeding. The possible evolution of such relict ice under the ongoing climate warming is also discussed. (C) 2017 Elsevier Ltd and INQUA. All rights reserved.
机译:欧洲东南部的阿尔卑斯山是整个高山链中年平均降雨量最高的地方。因此,与其他高山地区相比,这里的冰川演化可能具有不同的时空格局。本文讨论了斯洛文尼亚朱利安阿尔卑斯山克尔尼察河谷三个冰川阶段的地貌学证据,这是对该高山部门进行全面古冰川学研究的第一步。上克尼卡河谷保存良好的冰川地貌,可以通过基于野外的地貌学和沉积学数据,并通过地理空间分析,重建冰川表面地形和相应的平衡线高度。最上面的额叶属于小冰期(LIA),相应的ELA估计为1973 ma.s.l。与LIA ELA相比,其他两个阶段的ELA分别降低了50 m和161 m,分别表明古冰川的全新世年龄和较年轻的Dryas年龄。这种假设来自绝对年龄,以及在欧洲阿尔卑斯山其他地方观察到的相关ELA下降。通过地球物理研究成像,在克尔尼察(Krnica)圆环中的碎屑下存在埋藏的冰,这表明能够保存残存冰川冰的特殊微气候条件。由于极端的夏季遮荫以及吹雪和雪崩给水引发的大量冬季积雪,地面上有积雪的递归存在,这受到了青睐。还讨论了在持续的气候变暖下这种残留冰的可能演化。 (C)2017爱思唯尔有限公司和INQUA。版权所有。

著录项

  • 来源
    《Quaternary International》 |2018年第ptaa期|67-81|共15页
  • 作者单位

    Univ Ljubljana, Fac Arts, Dept Geog, Askerceva 2, Ljubljana 1000, Slovenia;

    CNR, ISMAR, Dept Earth Syst Sci & Environm Technol, Area Sci Pk Basovizza,Q2 Bldg SS14 Km 163-5, I-34149 Trieste, Italy;

    Univ Ljubljana, Fac Arts, Dept Geog, Askerceva 2, Ljubljana 1000, Slovenia;

    Univ Trieste, Dept Math & Geosci, Via Weiss 1, I-34128 Trieste, Italy;

    Geol Survey Slovenia, Dimiceva 14, Ljubljana 1000, Slovenia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    European Alps; Ice patch; ELA; GPR; Holocene; Younger Dryas;

    机译:欧洲阿尔卑斯山;冰川;ELA;GPR;全新世;年轻树精;
  • 入库时间 2022-08-18 03:35:06

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