利用综合电阻率和探地雷达方法对Orravatnsrústir palsa站点(冰岛中部)的内部结构和palsa的发展进行了调查

IF 3 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL
A. Emmert, C. Kneisel
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引用次数: 7

摘要

palsas的自然周期性发展使得很难使用可见的衰变迹象作为环境变化的参考点。因此,要确定palsa的实际发育阶段,对其内部结构的研究至关重要。我们的研究介绍了冰岛中部Orravatnsrústir Palsa遗址的二维和三维电阻率成像(ERI)和二维探地雷达(GPR)结果、地表和地下温度的测量以及土壤基质电位的测量。通过对结果的联合解释,我们推导出了五个不同大小和形状的沼泽的内部结构(即融化区和永久冻土的厚度、冰/水含量)。结果区分了初始发育阶段和成熟发育阶段,并表明不同发育阶段的斑块可以非常接近地存在。内部特征表明四个沼泽未受干扰地发育,一个沼泽显示环境变化的迹象。我们的研究表明了多方法地球物理方法的价值,并介绍了土壤基质电位的测量,作为评估地下现状的一种有前途的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Internal structure and palsa development at Orravatnsrústir Palsa Site (Central Iceland), investigated by means of integrated resistivity and ground‐penetrating radar methods
The natural cyclical development of palsas makes it difficult to use visible signs of decay as reference points for environmental change. Thus, to determine the actual development stage of a palsa, investigations of the internal structure are crucial. Our study presents 2‐D and 3‐D electrical resistivity imaging (ERI) and 2‐D ground‐penetrating radar (GPR) results, measurements of surface and subsurface temperatures, and of the soil matric potential from Orravatnsrústir Palsa Site in Central Iceland. By a joint interpretation of the results, we deduce the internal structure (i.e., thickness of thaw zone and permafrost, ice/water content) of five palsas of different size and shape. The results differentiate between initial and mature development stages and show that palsas of different development stages can exist in close proximity. While internal characteristics indicate undisturbed development of four palsas, one palsa shows indications of environmental change. Our study shows the value of the multimethod geophysical approach and introduces measurements of the soil matric potential as a promising method to assess the current state of the subsurface.
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来源期刊
CiteScore
9.70
自引率
8.00%
发文量
43
审稿时长
>12 weeks
期刊介绍: Permafrost and Periglacial Processes is an international journal dedicated to the rapid publication of scientific and technical papers concerned with earth surface cryogenic processes, landforms and sediments present in a variety of (Sub) Arctic, Antarctic and High Mountain environments. It provides an efficient vehicle of communication amongst those with an interest in the cold, non-glacial geosciences. The focus is on (1) original research based on geomorphological, hydrological, sedimentological, geotechnical and engineering aspects of these areas and (2) original research carried out upon relict features where the objective has been to reconstruct the nature of the processes and/or palaeoenvironments which gave rise to these features, as opposed to purely stratigraphical considerations. The journal also publishes short communications, reviews, discussions and book reviews. The high scientific standard, interdisciplinary character and worldwide representation of PPP are maintained by regional editorial support and a rigorous refereeing system.
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