Understanding Reef Flat Sediment Regimes and Hydrodynamics can Inform Erosion Mitigation on Land

Collabra Pub Date : 2016-01-19 DOI:10.1525/COLLABRA.25
L. Teneva, M. McManus, Conor Jerolmon, Anna B. Neuheimer, S. J. Clark, Gordon O. Walker, Kolomona Kaho'ohalahala, E. Shimabukuro, Chris E. Ostrander, J. Kittinger
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引用次数: 23

Abstract

Coral reefs worldwide are affected by excessive sediment and nutrient delivery from adjacent watersheds. Land cover and land use changes contribute to reef ecosystem degradation, which in turn, diminish many ecosystem services, including coastal protection, recreation, and food provisioning. The objectives of this work were to understand the role of coastal oceanic and biophysical processes in mediating the effects of sedimentation in shallow reef environments, and to assess the efficacy of land-based sediment remediation in the coastal areas near Maunalei reef, Lāna’i Island, Hawai’i. To the best of our knowledge, this was the first study of sediment dynamics on an east-facing (i.e., facing the trade winds) reef in the Hawaiian Islands. We developed ridge-to-reef monitoring systems at two paired stream bed-to-reef sites, where one of the reef sites was adjacent to a community stream sediment remediation project. We found that the two reef sites were characterized by different processes that affected the sediment removal rates; the two sites were also exposed to different amounts of sediment runoff. The community stream sediment remediation project appeared to keep at least 77 tonnes of sediment off the reef flat in one wet season. We found that resuspension of sediments on this reef was similar to that on north-facing and south-facing reefs that also are exposed to the trade winds. We posit that sites with slower sediment removal rates due to slower current velocities or high resuspension rates will require more-robust sediment capture systems on land to reduce sediment input rates and maximize potential for reef health recovery. This suggests that interventions such as local sediment remediation and watershed restoration may mitigate sediment delivery to coral reefs, but these interventions are more likely to be effective if they account for how adjacent coastal oceanographic processes distribute, accumulate, or advect sediment away from reefs. Our results on the effectiveness of gabion dam sediment capture may help guide scalable solutions for erosion control on islands.
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了解礁滩沉积机制和水动力学可以为陆地侵蚀减缓提供信息
世界各地的珊瑚礁都受到来自邻近流域的过量沉积物和养分输送的影响。土地覆盖和土地利用的变化导致了珊瑚礁生态系统的退化,这反过来又减少了许多生态系统的服务,包括海岸保护、娱乐和食物供应。本研究的目的是了解沿海海洋和生物物理过程在浅礁环境中调节沉积效应的作用,并评估夏威夷Lāna 'i岛茂纳莱礁附近沿海地区陆基沉积物修复的效果。据我们所知,这是第一次对夏威夷群岛朝东(即面对信风)礁石的沉积物动力学进行研究。我们在两个成对的河床到珊瑚礁地点开发了脊到珊瑚礁监测系统,其中一个珊瑚礁地点毗邻社区河流沉积物修复项目。我们发现,这两个珊瑚礁遗址具有不同的过程特征,这些过程影响了沉积物的去除速率;这两个地点也暴露在不同数量的泥沙径流中。社区溪流沉积物修复项目似乎在一个雨季将至少77吨沉积物从礁滩上清除。我们发现,这个珊瑚礁上沉积物的再悬浮与同样暴露在信风中的朝北和朝南的珊瑚礁相似。我们假设,由于流速较慢或再悬浮率高,沉积物去除率较慢的地点将需要陆地上更强大的沉积物捕获系统,以减少沉积物输入率,并最大限度地提高珊瑚礁健康恢复的潜力。这表明,诸如当地沉积物修复和流域恢复等干预措施可能会减轻沉积物向珊瑚礁的输送,但如果这些干预措施能够考虑到邻近沿海海洋过程如何分布、积累或将沉积物从珊瑚礁中平流出去,则这些干预措施更有可能有效。我们的研究结果对格宾坝泥沙捕获的有效性可能有助于指导岛屿侵蚀控制的可扩展解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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