Full-scale experiments on wave transmission and stability of oyster shell-filled bag berms

IF 4.2 2区 工程技术 Q1 ENGINEERING, CIVIL Coastal Engineering Pub Date : 2024-07-09 DOI:10.1016/j.coastaleng.2024.104578
Mitchel Provan , Amanj Rahman , Enda Murphy
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Abstract

Oyster shell-filled bags have been used in engineered reefs and living shorelines as a nature-based solution to attenuate wave energy and stabilize shorelines. However, due to limited scientific data, uncertainties persist in accurately predicting the performance of these reefs, which can hinder a more widespread adoption. In particular, there is a lack of information on wave transmission through, and the stability of, oyster shell-filled bag berms with different configurations and relative freeboards. To address this knowledge gap, a full (1:1) scale experimental flume study was conducted to measure the wave transmission and stability of six different oyster shell-filled bag berms under a range of incident wave conditions and water levels. The findings from the experimental tests were used to propose empirical equations for wave transmission and stability, which can assist practitioners in predicting the performance of these engineered reefs.

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牡蛎壳填充袋护堤的波浪传播和稳定性全尺寸实验
牡蛎壳填充袋已被用于工程礁石和活海岸线,作为一种基于自然的解决方案,用于衰减波浪能和稳定海岸线。然而,由于科学数据有限,在准确预测这些礁石的性能方面仍然存在不确定性,这可能会阻碍其更广泛的应用。特别是,关于波浪通过不同配置和相对自由度的牡蛎壳填充袋护堤以及其稳定性的信息十分匮乏。为了弥补这一知识空白,我们进行了一次完整(1:1)规模的水槽实验研究,以测量六种不同的牡蛎壳填充袋护堤在一系列入射波条件和水位下的波浪传播和稳定性。实验测试结果被用于提出波浪传播和稳定性的经验公式,以帮助从业人员预测这些工程礁石的性能。
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来源期刊
Coastal Engineering
Coastal Engineering 工程技术-工程:大洋
CiteScore
9.20
自引率
13.60%
发文量
0
审稿时长
3.5 months
期刊介绍: Coastal Engineering is an international medium for coastal engineers and scientists. Combining practical applications with modern technological and scientific approaches, such as mathematical and numerical modelling, laboratory and field observations and experiments, it publishes fundamental studies as well as case studies on the following aspects of coastal, harbour and offshore engineering: waves, currents and sediment transport; coastal, estuarine and offshore morphology; technical and functional design of coastal and harbour structures; morphological and environmental impact of coastal, harbour and offshore structures.
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