Cave mountain permafrost environments in Picos de Europa and their implications

IF 0.5 Q4 GEOLOGY Cuaternario y Geomorfologia Pub Date : 2021-12-16 DOI:10.17735/cyg.v35i3-4.89377
M. Gómez‐Lende, Enrique Serrano Cañadas
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引用次数: 1

Abstract

The thermal definition of permafrost can be attributed to a wide diversity of periglacial environments, one of which is ice caves. This study analyzes ice caves in relation to the thermal aspect of permafrost with the aim of describing ice caves with permafrost in the temperate high mountain of the Picos de Europa and their implications in the interpretation of ice caves as permafrost indicators. Ice caves provide the environmental conditions of mountain permafrost, with annual mean temperatures below 0ºC over several consecutive years and multiple perennial cryomorphologies. Ice caves are not found at sites where surface environments have permafrost, however endoclimatic features and cryomorphological elements indicate environments with permafrost in the upper part of the cavities currently entirely unrelated to surface climatic conditions. Based on endoclimate data and on landform types and cryomorphic processes, a classification is established unrelated to surface permafrost environments: cave mountain permafrost environment.
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欧洲皮科山洞穴山冻土环境及其启示
永久冻土的热定义可归因于冰缘环境的广泛多样性,其中之一就是冰洞。本研究分析了冰洞与永久冻土的热方面的关系,目的是描述欧罗巴山脉温带高山上具有永久冻土的冰洞,以及它们在解释冰洞作为永久冻土指标方面的意义。冰洞提供了山区永久冻土的环境条件,连续几年的年平均温度低于0ºC,具有多种常年低温形态。在地表环境具有永久冻土的地点没有发现冰洞,但内气候特征和低温形态元素表明,冰洞上部具有永久冻土,目前与地表气候条件完全无关。根据内气候数据、地貌类型和低温过程,建立了一个与地表多年冻土环境无关的分类:洞穴山多年冻土环境。
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来源期刊
CiteScore
0.60
自引率
60.00%
发文量
6
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