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首页> 外文期刊>Journal of geophysical research. Earth Surface: JGR >Modeling the biogeomorphic evolution of coastal dunes in response to climate change
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Modeling the biogeomorphic evolution of coastal dunes in response to climate change

机译:建模沿海沙丘的生物果状演变以应对气候变化

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Coastal dunes form in many parts of the world the first flood defense line against the sea. To study effects of climate change on coastal dune evolution, we used a cellular model of dune, beach, and vegetation development. The model was calibrated and validated against field measurements of the Dutch coast, showing good performance for 10 year simulations. A sensitivity analysis showed that dune size and morphology are most sensitive to the rate of aeolian input and wave dissipation. Finally, 100 year climate change scenarios were run to establish the impacts of sea level rise and changes in vegetation growth rate on dune evolution. The results are in good agreement with conceptual models of dune evolution. Sea level rise largely determines the direction of dune evolution: the rate of rising controls whether dunes are able to preserve their height or sand volume while migrating landward. The effect of changing vegetation growth rates, resulting from climate change, is most manifest in dune response to large disturbances. If vegetation is removed halfway into the simulation, vegetation growth rate determines whether a foredune will revegetate and recover its height. Low vegetation growth rates result in mobile dunes that lose sand. The good agreement between observations and predictions indicates that the model successfully incorporates the suite of biogeomorphic and marine processes involved in dune building.
机译:沿海沙丘在世界的许多地区形成抗海洋的第一个防洪线。为了研究气候变化对沿海沙丘演变的影响,我们使用了沙丘,海滩和植被发展的蜂窝模型。该模型被校准并验证了荷兰海岸的田间测量,显示出10年的模拟性能良好。敏感性分析表明,沙丘大小和形态对海葵输入和波浪耗散的速度最敏感。最后,运行了100年的气候变化情景,以建立海平面上升和变化植被增长率对沙丘演变的影响。结果与沙丘演变的概念模型吻合良好。海平面上升在很大程度上决定了沙丘演变的方向:上升的控制速度控制在迁移着陆时,DUNES是否能够保持其高度或沙子体积。改变植被生长速率的影响,因气候变化而导致的气候变化最多表现为对大型干扰的反应。如果中途除去植被进入模拟,植被生长速率决定了常规是否会恢复并恢复其高度。低植被增长率导致移动沙丘失去沙丘。观察和预测之间的良好一致性表明该模型成功地融合了涉及沙丘大楼的生物果态和海洋过程的套件。

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