天山北坡不同MODIS积雪产品精度评价及其时空特征分析
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P426.635

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第三次新疆综合科学考察项目(2021xjkk0802);国家自然科学基金资助项目(32001130);河北省自然科学基金资助项目(D2019402067);中国科学院青年创新促进会资助项目(2020056)


Accuracy Evaluation and Spatiotemporal Characteristics Analysis of Different MODIS Snow Products on the Northern Slope of the Tianshan Mountains
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    摘要:

    以新疆天山北坡为研究区域,基于时序Landsat卫星影像及SNOMAP积雪制图算法,生成特定时间基点的高精度积雪覆盖数据,并将其作为"真值"评价三种MODIS积雪产品(中国MODIS逐日无云500 m积雪面积产品、北半球MODIS逐日无云积雪产品、亚洲高山区MODIS积雪指数与积雪物候产品)的数据精度。基于评价结果选择精度最高的MODIS积雪产品,分析该区域2001年至2020年间积雪覆盖频率及其时空变化特征。结果表明:(1)亚洲高山区MODIS积雪指数与积雪物候产品精度最高,在总体精度、低估误差、积雪分类精度和Kappa系数等方面均优于其他2种产品;(2)天山北坡年内积雪覆盖率呈周期性变化,峰值出现在每年12月至次年1月,谷值出现在每年6月至8月,海拔4 500 m以上区域年内各月积雪覆盖率几乎均达100%;(3)多年平均积雪覆盖频率空间分布东西差异显著,且随海拔升高而增加,终雪日期在东部平原及天山附近显著提前,凸显气候变暖对积雪物候的影响。

    Abstract:

    Taking the northern slope of the Tianshan Mountains in Xinjiang as the study area, high-precision snow cover data at specific time benchmarks were generated based on the Landsat time-series sa-tellite images and the SNOMAP snow mapping algorithm. These data were used as "ground truth" to evaluate the data accuracy of three MODIS snow products: MODIS daily cloud-free snow cover 500 m product for China, MODIS daily cloud-free snow product for Northern Hemisphere, and MODIS snow cover index and phenology product for High Mountain Asia. Based on the evaluation results, the MODIS snow product with the highest accuracy was selected to analyze the snow cover frequency and its spatiotemporal variation characteristics in the region from 2001 to 2020. The results showed that: (1) The MODIS snow cover index and phenology product for High Mountain Asia had the highest accuracy, outperforming the other two products in terms of overall accuracy, underestimation error, snow classification accuracy, and Kappa coefficient; (2) The Intra-annual snow cover fraction in the northern slope of the Tianshan Mountains showed periodic changes, with peaks occurring from December to January of the following year and troughs occurring from June to August. The snow cover rate in areas above 4 500 meters above sea level was almost 100% in every month of the year; (3) The spatial distribution of the multi-year average snow cover frequency showed significant differences, with obvious east-west variations, which increased with rising altitude. The snow end date was significantly advanced in the eastern plains and near the Tianshan Mountains, highlighting the impact of climate warming on snow phenology.

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李文豪,宋宏利,刘兴宇,张晓楠.天山北坡不同MODIS积雪产品精度评价及其时空特征分析[J].河北工程大学自然版,2026,43(2):93-102

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  • 收稿日期:2024-10-10
  • 修改日期:2024-11-21
  • 在线发布日期: 2026-05-11
  • 出版日期: 2026-04-25
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