Assessment of marsh terrace designs for wave attenuation utilizing a wave model

IF 1.9 4区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS Dynamics of Atmospheres and Oceans Pub Date : 2023-12-22 DOI:10.1016/j.dynatmoce.2023.101429
Raúl J. Osorio , Anna Linhoss , Adam Skarke , Michael G. Brasher , Madelyn McFarland
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Abstract

The northern Gulf of Mexico is facing high rates of wetland loss due to subsidence and sea level–rise, which has encouraged the application of various wetland restoration techniques. Marsh terracing is a restoration technique that has been implemented since the early 1990 s in Texas and Louisiana, yet few studies have been conducted to evaluate its effectiveness. Marsh terraces are segmented berms of soil built in coastal ponds that were once vegetated marshes. Marsh terracing is hypothesized to dissipate wind waves, encourage marsh expansion, and reduce shoreline erosion. This study (1) assessed the effectiveness of the most common terrace shapes (linear, chevron, and square) and spacing (100, 110, and 120 m) at reducing significant wave height (Hs), (2) assessed the effectiveness of alternative terrace designs for reducing Hs during different wind conditions, and 3) estimated the construction costs of alternative terrace designs. The Simulating WAves Nearshore (SWAN) model was used to simulate wind–driven waves in ponds with real and hypothetical terrace designs. Results revealed that: (1) The chevron shape provided the greatest reduction in Hs during all wind conditions, reducing Hs by up to 54%. (2) Hs reduction was not affected by terrace spacings. (3) Based on wave attenuation, the chevron design with a 120 m terrace spacing provided the optimal outcome with an estimated construction cost/ha of $6332 in a 250,000 m2 site compared to the terrace shapes and spacings evaluated in this study. This study will help coastal managers design marsh terraces to address wetland erosion in the Gulf of Mexico and other coastal areas facing similar environmental problems.

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利用波浪模型评估波浪衰减的沼泽梯田设计
墨西哥湾北部正面临着因地表沉降和海平面上升而造成的高湿地丧失率,这促使人们应用各种湿地恢复技术。自 20 世纪 90 年代初以来,德克萨斯州和路易斯安那州一直在采用沼泽梯田这一恢复技术,但很少有研究对其效果进行评估。沼泽梯田是在曾经是植被沼泽的沿海池塘中建造的分段式土堤。据推测,沼泽梯田可以消散风浪,促进沼泽扩展,减少海岸线侵蚀。这项研究 1)评估了最常见的梯田形状(线形、楔形和方形)和间距(100 米、110 米和 120 米)在降低显著波高(Hs)方面的效果;2)评估了替代梯田设计在不同风力条件下降低 Hs 的效果;3)估算了替代梯田设计的建造成本。使用模拟近岸波浪(SWAN)模型模拟了采用真实和假设梯田设计的池塘中由风力驱动的波浪。结果显示1) 在所有风力条件下,楔形设计能最大程度地减少波浪,最多可减少 54% 的波浪。2)Hs 的减少不受梯田间距的影响。3) 根据波浪衰减情况,与本研究中评估的梯田形状和间距相比,在 250,000 平方米的场地上,梯田间距为 120 米的楔形设计提供了最佳结果,估计每公顷建造成本为 6,332 美元。这项研究将有助于沿海管理人员设计沼泽梯田,以解决墨西哥湾和其他面临类似环境问题的沿海地区的湿地侵蚀问题。
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来源期刊
Dynamics of Atmospheres and Oceans
Dynamics of Atmospheres and Oceans 地学-地球化学与地球物理
CiteScore
3.10
自引率
5.90%
发文量
43
审稿时长
>12 weeks
期刊介绍: Dynamics of Atmospheres and Oceans is an international journal for research related to the dynamical and physical processes governing atmospheres, oceans and climate. Authors are invited to submit articles, short contributions or scholarly reviews in the following areas: •Dynamic meteorology •Physical oceanography •Geophysical fluid dynamics •Climate variability and climate change •Atmosphere-ocean-biosphere-cryosphere interactions •Prediction and predictability •Scale interactions Papers of theoretical, computational, experimental and observational investigations are invited, particularly those that explore the fundamental nature - or bring together the interdisciplinary and multidisciplinary aspects - of dynamical and physical processes at all scales. Papers that explore air-sea interactions and the coupling between atmospheres, oceans, and other components of the climate system are particularly welcome.
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