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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Equilibrium of vegetation and climate at the European rear edge. A reference for climate change planning in mountainous Mediterranean regions
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Equilibrium of vegetation and climate at the European rear edge. A reference for climate change planning in mountainous Mediterranean regions

机译:欧洲后缘的植被和气候平衡。地中海山区的气候变化规划参考

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Mediterranean mountains harbour some of Europe's highest floristic richness. This is accounted for largely by the mesoclimatic variety in these areas, along with the co-occurrence of a small area of Eurosiberian, Boreal and Mediterranean species, and those of Tertiary Subtropical origin. Throughout the twenty-first century, we are likely to witness a climate change-related modification of the biogeographic scenario in these mountains, and there is therefore a need for accurate climate regionalisations to serve as a reference of the abundance and distribution of species and communities, particularly those of a relictic nature. This paper presents an objective mapping method focussing on climate regions in a mountain range. The procedure was tested in the Cordillera Central Mountains of the Iberian Peninsula, in the western Mediterranean, one of the ranges occupying the largest area of the Mediterranean Basin. This regionalisation is based upon multivariate analyses and upon detailed cartography employing 27 climatic variables. We used spatial interpolation of data based on geographic information. We detected high climatic diversity in the mountain range studied. We identified 13 climatic regions, all of which form a varying mosaic throughout the annual temperature and rainfall cycle. This heterogeneity results from two geographically opposed gradients. The first one is the Mediterranean-Euro-Siberian variation of the mountain range. The second gradient involves the degree of oceanicity, which is negatively related to distance from the Atlantic Ocean. The existing correlation between the climatic regions detected and the flora existing therein enables the results to be situated within the projected trends of global warming, and their biogeographic and ecological consequences to be analysed.
机译:地中海山脉拥有欧洲最高的植物区系。这主要是由于这些地区的中温气候变化以及一小部分欧洲西伯利亚,北方和地中海物种以及第三纪亚热带起源的物种同时出现。在整个二十一世纪,我们可能会目睹气候变化对这些山区生物地理环境的影响,因此需要准确的气候区域划分,以作为物种和群落的丰富度和分布的参考,尤其是那些遗迹性质的。本文提出了一种针对山区气候区域的客观制图方法。该方法在地中海西部伊比利亚半岛的山脉中央山脉进行了测试,该山脉是地中海盆地面积最大的山脉之一。该区域化基于多变量分析和采用27个气候变量的详细制图。我们使用了基于地理信息的数据空间插值。我们在所研究的山脉中发现了高度的气候多样性。我们确定了13个气候区域,在整个年度温度和降雨周期中,所有这些区域都形成了不同的镶嵌。这种异质性是由两个在地理上相对的梯度造成的。第一个是山脉的地中海-欧洲-西伯利亚变化。第二个梯度涉及海洋度,它与距大西洋的距离负相关。检测到的气候区域与其中存在的植物区系之间的现有相关性使得结果能够位于预计的全球变暖趋势之内,并且可以对其生物地理和生态后果进行分析。

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