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首页> 外文期刊>The Science of the Total Environment >Land surface phenology and greenness in Alpine grasslands driven by seasonal snow and meteorological factors
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Land surface phenology and greenness in Alpine grasslands driven by seasonal snow and meteorological factors

机译:在季节性雪和气象因素驱动的高山草原中的土地表面候选和绿色

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摘要

Snow accumulation and melt have multiple impacts on Land Surface Phenology (LSP) and greenness in Alpine grasslands. Our understanding of these impacts and their interactions with meteorological factors are still limited. In this study, we investigate this topic by analyzing LSP dynamics together with potential drivers, using satellite imagery and other data sources. LSP (start and end of season) and greenness metrics were extracted from time series of vegetation and leaf area index. As explanatory variables we used snow accumulation, snow cover melt date and meteorological factors. We tested for inter-annual co-variation of LSP and greenness metrics with seasonal snow and meteorological metrics across elevations and for four sub-regions of natural grasslands in the Swiss Alps over the period 2003-2014. We found strong positive correlations of snow cover melt date and snow accumulation with the start of season, especially at higher elevation. Autumn temperature was found to be important at the end of season below 2000 m above sea level (m asl), while autumn precipitation was relevant above 2000 m asl, indicating climatic growth limiting factors to be elevation dependent. The effects of snow and meteorological factors on greenness revealed that this metric tends to be influenced by temperatures at high elevations, and by snow melt date at low elevations. Given the high sensitivity of alpine grassland ecosystems, these results suggest that alpine grasslands may be particularly affected by future changes in seasonal snow, to varying degree depending on elevation.
机译:积雪和熔体对阿尔卑斯草原的土地表面候选(LSP)和绿色有多次影响。我们对这些影响的理解及其与气象因素的互动仍然有限。在这项研究中,我们通过使用卫星图像和其他数据源将LSP动态与潜在驱动程序分析LSP动态来调查此主题。 LSP(季节开始和结束)和绿色指标从植被和叶片区域指数的时间序列中提取。作为解释性变量,我们使用积雪,雪覆盖融化日期和气象因素。我们在2003 - 2014年期间测试了在2003 - 2014年期间的季节性雪和气象学指标与季节性雪和气象指标的年度共同变异,以及瑞士阿尔卑斯山的四个子区域。我们发现季节开始,雪覆盖融化日期和积雪积累的强大正相关,特别是在高度升高。在海拔2000米以下的季节结束时发现秋季温度是重要的,而秋季沉淀在2000米ASL以上相关,表明依赖升高的气候增长限制因素。雪和气象因素对绿色的影响揭示了这种度量往往受到高凸起温度的影响,并且在低升高的雪融化日期。鉴于高山草原生态系统的高灵敏度,这些结果表明,高山草原可能受到季节性雪的未来变化的特别影响,这取决于海拔的不同程度。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul10期|138380.1-138380.11|共11页
  • 作者单位

    Remote Sensing Laboratories Department of Geography University of Zurich Winterthurerstr. 190 8057 Zurich Switzerland;

    WSL Institute for Snow and Avalanche Research SLF Davos Flueelastr. 11 7260 Davos Dorf Switzerland;

    WSL Institute for Snow and Avalanche Research SLF Davos Flueelastr. 11 7260 Davos Dorf Switzerland;

    Remote Sensing Laboratories Department of Geography University of Zurich Winterthurerstr. 190 8057 Zurich Switzerland;

    Remote Sensing Laboratories Department of Geography University of Zurich Winterthurerstr. 190 8057 Zurich Switzerland;

    Institute for Earth Observation EURAC Viale Druso 1 I-39100 Bolzano Italy;

    Institute for Earth Observation EURAC Viale Druso 1 I-39100 Bolzano Italy German Remote Sensing Data Center Earth Observation Center German Aerospace Center 82234 Wessling Germany;

    Remote Sensing Laboratories Department of Geography University of Zurich Winterthurerstr. 190 8057 Zurich Switzerland;

    Remote Sensing Laboratories Department of Geography University of Zurich Winterthurerstr. 190 8057 Zurich Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Land surface phenology; Snow cover melt; Snow water equivalent; Meteorological drivers; Alpine grasslands; Swiss Alps;

    机译:土地面料候选;雪覆盖融化;雪水当量;气象司机;高山草原;瑞士阿尔卑斯山;

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