Wave attenuation through forests under extreme conditions

环境科学 大洪水 风暴 河岸带 极端天气 衰减 畸形波 水槽 气候变化 水文学(农业) 环境资源管理 气象学 生态学 地理 地质学 精神分析 生物 分手 心理学 岩土工程 栖息地 量子力学 考古 非线性系统 物理 光学
作者
Bregje K. van Wesenbeeck,Guido Wolters,José A. Á. Antolínez,Sudarshini Kalloe,Bas Hofland,Wiebe de Boer,Ceylan Çete,Tjeerd J. Bouma
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:12 (1): 1884-1884 被引量:75
标识
DOI:10.1038/s41598-022-05753-3
摘要

Worldwide, communities are facing increasing flood risk, due to more frequent and intense hazards and rising exposure through more people living along coastlines and in flood plains. Nature-based Solutions (NbS), such as mangroves, and riparian forests, offer huge potential for adaptation and risk reduction. The capacity of trees and forests to attenuate waves and mitigate storm damages receives massive attention, especially after extreme storm events. However, application of forests in flood mitigation strategies remains limited to date, due to lack of real-scale measurements on the performance under extreme conditions. Experiments executed in a large-scale flume with a willow forest to dissipate waves show that trees are hardly damaged and strongly reduce wave and run-up heights, even when maximum wave heights are up to 2.5 m. It was observed for the first time that the surface area of the tree canopy is most relevant for wave attenuation and that the very flexible leaves limitedly add to effectiveness. Overall, the study shows that forests can play a significant role in reducing wave heights and run-up under extreme conditions. Currently, this potential is hardly used but may offer future benefits in achieving more adaptive levee designs.
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