Author:
Muna Lency Royce,Brodie Gilianne,Singh Awnesh,Hills Jeremy,Wandres Moritz,Damlamian Herve
Abstract
The Pacific Island Countries (PICs) are exposed to extreme wave conditions which are projected to be exacerbated by rising sea levels due to climate change, prompting the need for strategic planning of coastal communities and assets. Nature-based protection has been proposed as a sustainable solution to promote the resilience of coastal areas from physical impacts such as wave-induced erosion. In this study, we investigate the potential coastal protection service of shallow sub-tidal low-canopy seagrass beds, dominated by Halodule uninervis, on the rate of wave height and wave energy reduction on a barrier and fringing reefs. The data was collected using bottom-mounted pressure sensors to measure wave height and energy reduction as waves moved toward the shoreline across the seagrass beds. The results show that on average, the seagrass beds were able to reduce wave height by 30% and energy by 47% in both reef environments. These reduction rates are strongly influenced by water depth, seagrass characteristics and local reef conditions. Based on these results, seagrasses can strengthen the resilience of coastal shorelines to wave erosion, thus conserving healthy low-canopy seagrass habitats has measurable benefits for shoreline protection in Fiji and other PICs.
Subject
Ocean Engineering,Water Science and Technology,Aquatic Science,Global and Planetary Change,Oceanography
Reference67 articles.
1. Impact of jetty configuration changes on the hydrodynamics of the subtropical patos lagoon estuary, Brazil;António;Water,2020
2. Linking social, ecological, and physical science to advance natural and nature-based protection for coastal communities;Arkema;Ann. New York Acad. Sci.,2017
3. Coastal ecosystem-based management with nonlinear ecological functions and values;Barbier;Science,2008
4. Contribution of seagrass blue carbon toward carbon neutral policies in a touristic and environmentally-friendly island;Bedulli;Front. Mar. Sci.,2020
5. Changing ocean, marine ecosystems, and dependent communities;Bindoff,2019
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献