UAV and photogrammetric techniques to study shoreline changes in the high Arctic as exemplified by the Kaffiøyra region, Svalbard

IF 2.8 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL
Kamil Czarnecki, Ireneusz Sobota
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引用次数: 0

Abstract

High-latitude coasts are among many polar ecosystems vulnerable to global climate change. This paper presents research results on coastline changes in Kaffiøyra, Svalbard (High Arctic). Archival aerial photographs and satellite imagery (1966, 1990, 2017) were used, and field surveys (by UAVs) were carried out in 2021–22 to create high-resolution digital terrain models (pix ~ 5 cm). The Area Of Interest (AOI) covered ~1.5 km2 and was divided into four main zones of different characteristics (mouth of the river, beach, bay and sand spit). Remote sensing methods were used to determine the directions of changes in the Kaffiøyra coastline and to indicate the main factors affecting the deposition or erosion of sediments. With the support of a UAV kit with a GNSS receiver, using photogrammetric software, models, with precise and low error rates, were obtained depicting the state of the Arctic environment. The average rate of coastline retreat in the adopted AOI ranged from −0.24 ± 0.16 to 0.70 ± 0.16 m yr−1 (1966–2021), but in the selected period: −0.32 ± 0.57 to 0.19 ± 0.57 (1966–1990), −0.38 ± 0.40 to 1.10 ± 0.40 (1990–2017); −0.27 ± 0.47 to 1.33 ± 0.47 (2017–2021). The study described the direct factors (coastal currents, tides, hydrographic network) and indirect factors (meteorological conditions and recession of Kaffiøyra glaciers) but focused on the morphometric transformation of the shoreline. In this study, the authors sought to explain the causes of the changes that are occurring in the polar environment. They performed the analysis under the very specific meteorological and topographical conditions of the Kaffiøyra lowland, discovering and closing the spatial gaps of coastal research in the Arctic. The results were compared with different locations on Spitsbergen, where the reasons for these changes were quite different.

Abstract Image

无人机和摄影测量技术研究高北极地区的海岸线变化,以斯瓦尔巴群岛kaffe øyra地区为例
高纬度海岸是许多易受全球气候变化影响的极地生态系统之一。本文介绍了高北极斯瓦尔巴群岛kaffe øyra海岸线变化的研究成果。使用了档案航空照片和卫星图像(1966年、1990年、2017年),并在2021 - 2022年进行了实地调查(通过无人机),以创建高分辨率数字地形模型(像素~ 5厘米)。兴趣区(AOI)面积约1.5 km2,分为四个不同特征的主要区域(河口、海滩、海湾和沙嘴)。利用遥感方法确定了Kaffiøyra海岸线的变化方向,并指出了影响沉积物沉积或侵蚀的主要因素。在配备GNSS接收机的无人机套件的支持下,利用摄影测量软件,获得了精确、低错误率的北极环境模型。所采用AOI的平均海岸线退缩率为- 0.24±0.16 ~ 0.70±0.16 m /年(1966-2021),但在所选时期为- 0.32±0.57 ~ 0.19±0.57(1966-1990),- 0.38±0.40 ~ 1.10±0.40 (1990-2017);−0.27±0.47 ~ 1.33±0.47 (2017-2021)研究对直接因子(海流、潮汐、水文网)和间接因子(气象条件和kaffe øyra冰川退缩)进行了描述,但重点研究了海岸线的形态变化。在这项研究中,作者试图解释极地环境变化的原因。他们在kaffe øyra低地非常特殊的气象和地形条件下进行了分析,发现并填补了北极沿海研究的空间空白。结果与斯匹次卑尔根岛不同的地点进行了比较,这些变化的原因非常不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Earth Surface Processes and Landforms
Earth Surface Processes and Landforms 地学-地球科学综合
CiteScore
6.40
自引率
12.10%
发文量
215
审稿时长
4 months
期刊介绍: Earth Surface Processes and Landforms is an interdisciplinary international journal concerned with: the interactions between surface processes and landforms and landscapes; that lead to physical, chemical and biological changes; and which in turn create; current landscapes and the geological record of past landscapes. Its focus is core to both physical geographical and geological communities, and also the wider geosciences
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