青藏高原南部滑坡面积变化与环境因素的关系研究

Wentao Xu, Qinjun Wang, Jingyi Yang, Boqi Yuan, Chaokang He
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摘要

导言:众所周知,滑坡是最常见的地质灾害类型之一。然而,目前还没有一种成熟的方法可用于大规模、快速和高精度的滑坡提取。环境变化对滑坡发展的定量影响也不甚了解,这阻碍了环境和灾害应对方面的准确评估和决策。包括南极、北极和青藏高原(TP)在内的极地地区对全球环境变化非常敏感,受到全球变暖的显著影响。这导致了广泛的滑坡发展,尤其是在青藏高原南部。本研究重点关注青藏高原南部的新滑坡,探索滑坡的开采方法以及滑坡与环境因素之间的关系:利用谷歌地球引擎(GEE)和改进的大津阈值分割算法,我们处理了分辨率为 10 米的遥感图像,以识别滑坡区域。所提出的归一化滑坡裸土分离指数(NDLBSI)在从哨兵-2(Sentinel-2)影像中提取2019年至2023年的滑坡方面达到了87%的预提取准确率。针对预提取结果,进行了人工判读和校正,并基于最小二乘多元统计方法建立了年度滑坡变化与环境因子的相关模型:结果表明,在过去 5 年中,南部 TP 的滑坡面积明显增加,这与全流域年平均气温和植被覆盖面积的增加以及积雪覆盖面积的减少相关:这些变化可能会影响土壤和岩石的湿度,从而影响土壤的稳定性和滑坡的发生。该研究为大规模滑坡检测和了解影响滑坡的环境因素提供了有价值的见解,对滑坡灾害预警具有一定意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A research on the relationship between landslide area changes and environmental factors in the southern Tibetan plateau
Introduction: Landslides are known to be one of the most frequent types of geological disasters. However, there is not an established method for large-scale, rapid, and high-precision landslide extraction. The quantitative impact of environmental changes on landslide development is also not well understood, which hinders accurate assessments and decision-making in environmental and disaster response. The polar regions, including the Antarctic, the Arctic, and the Tibetan plateau (TP), sensitive to global environmental changes, are significantly affected by global warming. This leads to extensive landslide development, particularly in the southern TP. This research focuses on new landslides in the southern TP, exploring extraction methods and the relationship between landslides and environmental factors.Methods: Utilizing the Google Earth Engine (GEE) and an improved Otsu threshold segmentation algorithm, we processed remote sensing images with 10 m resolution to identify landslide areas. The proposed Normalized Landslide Bare-soil Separation Index (NDLBSI) achieved an 87% pre-extraction accuracy in extracting landslides from Sentinel-2 images from 2019 to 2023. For the pre-extraction results, manual interpretation and correction were carried out, and a model correlating annual landslide changes with environmental factors was established based on least squares multivariate statistical methods.Results: Results show that a significant increase in landslide areas in the southern TP over the past 5 years, correlating with the watershed-wide increase in annual average temperature and vegetation cover, along with a decrease in snow cover area.Discussion: These changes could affect soil and rock moisture, influencing soil stability and landslide occurrence. The study provides valuable insights for large-scale landslide detection and understanding the environmental factors influencing landslides, which is of some significance for landslide hazards early warning.
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