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Karst Cave Geoheritage in Protected Areas: Characterisation and Proposals of Management of Deep Caves in the Picos de Europa National Park (Spain)

机译:受保护区的喀斯特洞穴Geoheretage:Picos De Europa国家公园(西班牙)深洞穴管理的特征和建议

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摘要

Caves are one of the most spectacular elements of karst with a high natural value, due to their singularity and high diversity of natural features. The Picos de Europa National Park (Spain) is a high mountain protected area that represents the highest density of deep caves of the World (12 deep caves/km(2)). This work analyses geoheritage linked to these caves as a part of broad projects to know and inventory the geological heritage of the Picos de Europa National Park. The methodology of work combines both geomorphological and geoheritage studies. Geomorphological study includes a caves inventory of the National Park, the characterization of the caves geomorphology and the selection of 14 caves with > 1-km depth as geosites, including an ice cave for its uniqueness. The geoheritage study is based on a four-forms system formed by selected indicators following the pressure-state-response (PSR) model. In the short term, management measures proposed for the deep karst caves of the National Park include enhancing the scientific research focused on karst and groundwater flow evolution and the palaeoclimatic variations of the region including ice cave monitoring. In the medium term, it should be adequate to re-design the public use system for the regulation and control of the visits to the caves and to emphasise the outstanding nature of the geoheritage linked to the endokarst of the National Park. Finally, in the long term, it would be necessary to design a visit system for expert speleological groups.
机译:由于它们的奇异性和高多样性的自然特征,洞穴是喀斯特最壮观的喀斯特元素之一。 Picos de Europa国家公园(西班牙)是一个高山保护区,代表世界深洞穴的最高密度(12个深洞/ km(2))。这项工作分析了与这些洞穴相关的Geoherage作为广泛项目的一部分,以了解和清查Picos De Europa国家公园的地质遗产。工作方法结合了地貌和格林哲学研究。地貌研究包括国家公园的洞穴库存,洞穴性地貌的表征以及选择14个洞穴,其中1公里深度为地质,包括唯一性的冰洞。 Geoherage研究基于由压力 - 状态响应(PSR)模型之后的选定指标形成的四种形式系统。在短期内,为国家公园的深岩石洞穴提出的管理措施包括加强专注于喀斯特和地下水进化的科学研究以及该地区的古色目程度变化,包括冰洞监测。在中期,它应该足以重新设计公共使用系统,以便对洞穴的访问和控制洞穴的访问,并强调与国家公园的endokarst联系的Geoherage的杰出性质。最后,从长远来看,有必要为专家洞穴组设计访问系统。

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