Larsemann Hills: Geomorphometric modeling and mapping

IF 1.5 4区 地球科学 Q3 ECOLOGY Polar Science Pub Date : 2023-12-01 DOI:10.1016/j.polar.2023.100969
I.V. Florinsky
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Abstract

Geomorphometric modeling is widely used in geosciences. However, geomorphometric modeling and mapping of Antarctic oases has not been performed so far. This article presents the first results of our work on geomorphometric modeling and mapping of the Larsemann Hills obtained in the frameworks of the 68th Russian Antarctic Expedition in January–April 2023. As input data, we used a fragment of the Reference Elevation Model of Antarctica (REMA). From the extracted and edited digital elevation model, we derived digital models and maps of the following 17 morphometric variables: slope, aspect, horizontal curvature, vertical curvature, mean curvature, Gaussian curvature, minimal curvature, maximal curvature, unsphericity curvature, difference curvature, vertical excess curvature, horizontal excess curvature, ring curvature, accumulation curvature, catchment area, topographic index, and stream power index. We also conducted a field geomorphometric interpretation work to provide correct physical geographic, geological, and geomorphological interpretations of morphometric maps. In the fieldwork, we carried out 54 foot routes with the total length of about 422 km. During the routes, we collected 150 rock samples for further petrological and mineralogical analyses as well as three-dimensional modeling of the samples. Derived morphometric maps can be useful for structural geological and process-oriented hydrological studies. The ultimate goal of the ongoing work is to create a large-scale geomorphometric atlas of Antarctic oases and other ice-free Antarctic territories.

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Larsemann Hills:地貌学建模和制图
地貌建模被广泛应用于地球科学领域。然而,南极绿洲的地貌建模和绘图工作至今尚未开展。本文介绍了我们在 2023 年 1 月至 4 月第 68 次俄罗斯南极考察框架内对拉尔斯曼丘陵进行地貌建模和绘图的初步成果。作为输入数据,我们使用了南极参考高程模型(REMA)的一个片段。从提取和编辑的数字高程模型中,我们得出了以下 17 个形态变量的数字模型和地图:坡度、坡向、水平曲率、垂直曲率、平均曲率、高斯曲率、最小曲率、最大曲率、非球形曲率、差异曲率、垂直超曲率、水平超曲率、环形曲率、堆积曲率、汇水面积、地形指数和溪流动力指数。我们还开展了野外地貌判读工作,以便对形态图进行正确的自然地理、地质和地貌判读。在野外工作中,我们开展了 54 条徒步路线,总长度约 422 公里。在考察过程中,我们采集了 150 个岩石样本,用于进一步的岩石学和矿物学分析,以及样本的三维建模。得出的形态测量图可用于构造地质学和以过程为导向的水文研究。当前工作的最终目标是绘制南极绿洲和其他无冰南极地区的大比例尺地貌图集。
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来源期刊
Polar Science
Polar Science ECOLOGY-GEOSCIENCES, MULTIDISCIPLINARY
CiteScore
3.90
自引率
5.60%
发文量
46
期刊介绍: Polar Science is an international, peer-reviewed quarterly journal. It is dedicated to publishing original research articles for sciences relating to the polar regions of the Earth and other planets. Polar Science aims to cover 15 disciplines which are listed below; they cover most aspects of physical sciences, geosciences and life sciences, together with engineering and social sciences. Articles should attract the interest of broad polar science communities, and not be limited to the interests of those who work under specific research subjects. Polar Science also has an Open Archive whereby published articles are made freely available from ScienceDirect after an embargo period of 24 months from the date of publication. - Space and upper atmosphere physics - Atmospheric science/climatology - Glaciology - Oceanography/sea ice studies - Geology/petrology - Solid earth geophysics/seismology - Marine Earth science - Geomorphology/Cenozoic-Quaternary geology - Meteoritics - Terrestrial biology - Marine biology - Animal ecology - Environment - Polar Engineering - Humanities and social sciences.
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