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Effectiveness of Mangrove Forests in Surface Wave Attenuation: A Review

机译:红树林在地表波衰减中的作用研究进展

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摘要

For once, mangrove forests were surprisingly resistant to the forceful impacts of the Indian Ocean Tsunami of December 2004 which swept away entire villages and caused the deaths of approximately 200,000 people. It was reported that human death and loss of property were significantly reduced in areas of dense mangrove forests in southeastern India. As the importance of mangrove is gaining attention lately, numerous countries have started to replant mangroves for coastal protection. This study discusses the extensive researches that have been conducted to study the role of mangrove forests in wave energy dissipation. These include field measurements, numerical studies and laboratory experiments. The findings illustrate that mangrove species, density, forest width, forest structure, age, water depth and incident wave height are among the factors affecting the performance of mangroves in attenuating waves. Dense forest, larger forest width, bigger trunk diameter and higher wave height resulted in relatively more wave energy dissipation by mangroves.
机译:红树林曾一度令人惊讶地抵抗了2004年12月印度洋海啸的强烈影响,这场海啸席卷了整个村庄,并造成约20万人死亡。据报道,在印度东南部茂密的红树林地区,人类的死亡和财产损失大大减少。随着近来红树林的重要性日益引起人们的注意,许多国家已开始重新种植红树林以进行海岸保护。这项研究讨论了广泛的研究,以研究红树林在波浪能量消散中的作用。这些包括现场测量,数值研究和实验室实验。研究结果表明,红树林的种类,密度,森林宽度,森林结构,年龄,水深和入射波高都是影响红树林衰减波性能的因素。茂密的森林,更大的森林宽度,更大的树干直径和更高的波浪高度导致红树林的波浪能量消散相对较多。

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