2001-2022 年祁连山反照率的时空变化及其驱动因素

IF 2.5 4区 地球科学 Q3 ENVIRONMENTAL SCIENCES Atmosphere Pub Date : 2024-09-06 DOI:10.3390/atmos15091081
Huazhu Xue, Haojie Zhang, Zhanliang Yuan, Qianqian Ma, Hao Wang, Zhi Li
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引用次数: 0

摘要

地表反照率在地球能量平衡和气候中起着举足轻重的作用。本研究分析了 2001 年至 2022 年祁连山地区反照率、归一化差异植被指数(NDVI)、归一化差异积雪指数(NSC)和地表温度(LST)的空间分布格局和时间演变。本研究评估了不同时间尺度上反照率与 NSC、NDVI 和 LST 的时空相关性。此外,研究还利用地理探测器量化了地形和自然因素对 QLMs 反照率变化的驱动力和相对贡献。研究结果表明:(1) 约 22.8%的 QLMs 显示出显著的反照率变化。年平均反照率和 NSC 出现轻微下降,下降率分别为-0.00037 和-0.05083(森氏斜率)。反之,LST 以 0.00564 的速率略有上升,而 NDVI 则以 0.00178 的速率显著上升。(2)NSC、LST 和植被的季节波动共同影响了祁连山的整体反照率变化。值得注意的是,无论是年内月变、多年月异常,还是区域多年平均趋势,反照率与NSC的变化趋势高度相似,且具有显著的相关性,表明NSC反映的积雪反照率变化发挥了重要作用。此外,PSI(永久冰雪区)的面积比例和相应的平均海拔略有上升,可能表明青藏高原的高山雪线正在缓慢上移。(3) NDVI、土地覆被类型(LCT)和数字高程模型(DEM,即海拔高度)对反照率空间模式的形成起着关键作用。此外,反照率的空间分布受坡度和 NDVI 交互作用的影响最为显著。
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Spatial–Temporal Variations and Driving Factors of the Albedo of the Qilian Mountains from 2001 to 2022
Surface albedo plays a pivotal role in the Earth’s energy balance and climate. This study conducted an analysis of the spatial distribution patterns and temporal evolution of albedo, normalized difference vegetation index (NDVI), normalized difference snow index snow cover (NSC), and land surface temperature (LST) within the Qilian Mountains (QLMs) from 2001 to 2022. This study evaluated the spatiotemporal correlations of albedo with NSC, NDVI, and LST at various temporal scales. Additionally, the study quantified the driving forces and relative contributions of topographic and natural factors to the albedo variation of the QLMs using geographic detectors. The findings revealed the following insights: (1) Approximately 22.8% of the QLMs exhibited significant changes in albedo. The annual average albedo and NSC exhibited a minor decline with rates of −0.00037 and −0.05083 (Sen’s slope), respectively. Conversely, LST displayed a marginal increase at a rate of 0.00564, while NDVI experienced a notable increase at a rate of 0.00178. (2) The seasonal fluctuations of NSC, LST, and vegetation collectively influenced the overall albedo changes in the Qilian Mountains. Notably, the highly similar trends and significant correlations between albedo and NSC, whether in intra-annual monthly variations, multi-year monthly anomalies, or regional multi-year mean trends, indicate that the changes in snow albedo reflected by NSC played a major role. Additionally, the area proportion and corresponding average elevation of PSI (permanent snow and ice regions) slightly increased, potentially suggesting a slow upward shift of the high mountain snowline in the QLMs. (3) NDVI, land cover type (LCT), and the Digital Elevation Model (DEM, which means elevation) played key roles in shaping the spatial pattern of albedo. Additionally, the spatial distribution of albedo was most significantly influenced by the interaction between slope and NDVI.
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来源期刊
Atmosphere
Atmosphere METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
4.60
自引率
13.80%
发文量
1769
审稿时长
1 months
期刊介绍: Atmosphere (ISSN 2073-4433) is an international and cross-disciplinary scholarly journal of scientific studies related to the atmosphere. It publishes reviews, regular research papers, communications and short notes, and there is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental and/or methodical details must be provided for research articles.
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