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Woody vegetative cover dynamics in response to recent climate change on an Atlantic coast barrier Island: A remote sensing approach

机译:大西洋沿岸屏障岛上木质植被的动态变化,以应对近期的气候变化:一种遥感方法

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摘要

Considering impacts of predicted increases in sea-level, storms, and alterations in precipitation patterns on geomorphological and associated ecological processes, woody vegetation dynamics may serve as sentinels to climate change on barrier islands. We examined island-scale conversion of land (i.e. sand to grassland to woody cover) while relating the importance of climate variables on rate of woody expansion. Light Detection and Ranging (LiDAR) was used to evaluate potential distribution of woody species based on distance to shoreline and elevation. Using Landsat TM imagery, we monitored changes in island size and vegetation classes (1984-2010). These comparisons revealed conversion of grassland to woody cover (285% increase) was closely linked to air temperature, precipitation and atmospheric [CO _2]. LiDAR data indicated that woody species have not expanded completely into the potential range. Our results suggest that woody species are responsive to climate change, thus serving as sentinels on Virginia barrier islands.
机译:考虑到预计的海平面上升,风暴和降水模式变化对地貌和相关生态过程的影响,木质植被的动态可能成为屏障岛气候变化的前兆。我们研究了岛屿规模的土地转换(即沙子到草地再到木本覆盖物),同时将气候变量对木本膨胀率的重要性联系起来。光检测和测距(LiDAR)用于根据距海岸线和海拔的距离评估木本物种的潜在分布。利用Landsat TM影像,我们监测了岛屿面积和植被类别(1984-2010年)的变化。这些比较表明,草地向木本覆盖的转化(增加285%)与气温,降水和大气[CO _2]密切相关。 LiDAR数据表明,木本物种尚未完全扩展到潜在范围。我们的结果表明,木本物种对气候变化有反应,因此成为弗吉尼亚屏障岛上的前哨。

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