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首页> 外文期刊>Ambio: A Journal of the Human Environment >Linking Fine-Scale Sub-Arctic Vegetation Distribution in Complex Topography with Surface-Air-Temperature Modelled at 50-m Resolution
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Linking Fine-Scale Sub-Arctic Vegetation Distribution in Complex Topography with Surface-Air-Temperature Modelled at 50-m Resolution

机译:将复杂地形中的小规模亚北极植被分布与以50 m分辨率建模的地表气温相联系

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摘要

Recent studies have shown that the complexities of the surface features in mountainous terrain require a re-assessment of climate impacts at the local level. We explored the importance of surface-air-temperature based on a recently published 50-m-gridded dataset, versus soil variables for explaining vegetation distribution in Swedish Lapland using generalised linear models (GLMs). The results demonstrated that the current distribution of the birch forest and snowbed community strongly relied on the surface-air-temperature. However, temperature alone is a poor predictor of many plant communities (wetland, meadow). Because of diminishing sample representation with increasing altitude, the snowbed community was under-sampled at higher altitudes. This results in underestimation of the current distribution of the snowbed community around the mountain summits. The analysis suggests that caution is warranted when applying GLMs at the local level.
机译:最近的研究表明,山区地形的表面特征十分复杂,需要在地方一级重新评估气候影响。我们基于最近发布的50 m网格数据集探索了地面空气温度的重要性,而土壤变量则可以使用广义线性模型(GLM)来解释瑞典拉普兰的植被分布。结果表明,桦树森林和雪床群落的当前分布强烈依赖于地表空气温度。但是,仅温度是许多植物群落(湿地,草甸)的不良预测。由于随着海拔的升高样品数量的减少,雪床群落在海拔较高的地区采样不足。这导致低估了山顶周围雪床社区的当前分布。分析表明,在本地应用GLM时应格外小心。

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