Delineation Evaluation and Variation of Debris-Covered Glaciers Based on the Multi-Source Remote Sensing Images, Take Glaciers in the Eastern Tomur Peak Region for Example

Author:

Yang Shujing12ORCID,Wang Feiteng1,Xie Yida12,Zhao Weibo12,Bai Changbin12ORCID,Liu Jingwen12,Xu Chunhai1ORCID

Affiliation:

1. Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China

2. University of Chinese Academy of Sciences, Beijing 100049, China

Abstract

As a particular type of alpine glacier, debris-covered glaciers are essential for local water resources and glacial disaster warnings. The Eastern Tomur Peak Region (EPTR) is the most concentrated glacier in Tien Shan Mountain, China, where the glaciers have not been studied in detail. This paper evaluates the delineation accuracy of Landsat8 OLI, Sentinel-1A, and GF images for debris-covered glaciers in the EPTR. Each image uses the most advanced delineation method for itself to minimize the error of inherent resolutions. The results show that the accuracy of these images for delineating debris-covered glaciers is very high, and the F1 scores are expressed as 96.73%, 93.55%, and 95.81%, respectively. Therefore, Landsat images were selected to analyze the area change of EPTR from 2000 to 2022 over a 5-year time scale. The results indicate that glaciers of the EPTR decreased by 19.05 km2 from 2000 to 2020, accounting for 1.9% (0.08% a−1), and debris increased by 10.8%, which validates the opinion that the presence of debris inhibits glacier melting. The most varied time was 2010–2022, but it was much less than other Tien Shan regions. The lower glacier ablation rate in this area results from the combined effect of decreased bare ice and increased debris. The main reason for the change in debris-covered glaciers is the increase in temperature.

Funder

Third Comprehensive Scientific Expedition of Xinjiang Uyghur Autonomous Region

Gansu Province Science and Technology Major Special Project

State Key Laboratory of Cryospheric Science

National Natural Science Foundation of China

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

Reference61 articles.

1. A comparative study of the material balance between continental and marine glaciers—Tian Shan and Alpine typical glaciers as an example;Su;J. Glaciol. Geocryol.,2015

2. Combining satellite multispectral image data and a digital elevation model for mapping debris-covered glaciers;Paul;Remote Sens. Environ.,2004

3. Recent glacier state anomalies and catastrophic risks on the Qinghai-Tibet Plateau and surrounding areas;Yao;Sci. Bull.,2019

4. Combination of SRTM3 and repeat ASTER data for deriving alpine glacier flow velocities in the Bhutan Himalaya;Remote Sens. Environ.,2005

5. Projected impacts of warming glacier shrinkage on water resources by 2050;Shi;J. Glaciol. Geocryol.,2001

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