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首页> 外文期刊>Frontiers in Marine Science >Modeling Fine-Scale Coral Larval Dispersal and Interisland Connectivity to Help Designate Mutually-Supporting Coral Reef Marine Protected Areas: Insights from Maui Nui, Hawaii
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Modeling Fine-Scale Coral Larval Dispersal and Interisland Connectivity to Help Designate Mutually-Supporting Coral Reef Marine Protected Areas: Insights from Maui Nui, Hawaii

机译:建模细型珊瑚幼虫分散和Interianland连接,以帮助指定相互支持的珊瑚礁海洋保护区:夏威夷毛伊·努乌的见解

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Connectivity among individual marine protected areas (MPAs) is one of the most important considerations in the design of integrated MPA networks. To provide such information for managers in Hawaii, USA, a numerical circulation model was developed to determine the role of ocean currents in transporting coral larvae from natal reefs throughout the high volcanic islands of the Maui Nui island complex in the southeastern Hawaiian Archipelago. Spatially- and temporally-varying wind, wave, and circulation model outputs were used to drive a km-scale, 3-dimensional, physics-based circulation model for Maui Nui. The model was calibrated and validated using satellite-tracked ocean surface current drifters deployed during coral-spawning conditions, then used to simulate the movement of the larvae of the dominant reef-building coral, Porites compressa, from 17 reefs during 8 spawning events in 2010-2013. These simulations make it possible to investigate not only the general dispersal patterns from individual coral reefs, but also how anomalous conditions during individual spawning events can result in large deviations from those general patterns. These data also help identify those reefs that are dominated by self-seeding and those where self-seeding is limited to determine their relative susceptibility to stressors and potential roadblocks to recovery. Overall, the numerical model results indicate that many of the coral reefs in Maui Nui seed reefs on adjacent islands, demonstrating the interconnected nature of the coral reefs in Maui Nui and providing a key component of the scientific underpinning essential for the design of a mutually supportive network of MPAs to enhance conservation of coral reefs.
机译:个人海洋保护区(MPA)之间的连接是集成MPA网络设计中最重要的考虑之一。为了为美国夏威夷的管理人员提供这些信息,开发了一个数值循环模型,以确定海洋电流在夏威夷南群岛毛伊岛岛屿群众的毛伊岛群众的高火山群中运输珊瑚幼虫。空间和时间变化的风力,波浪和循环模型输出用于推动MAUI NUI的KM规模,三维,物理基础循环模型。使用珊瑚履带的卫星跟踪的海洋表面电流漂移器校准并验证了珊瑚穴位条件,然后用于在2010年8个产卵事件中模拟主导Reef-Building Coral,Porite Compressa的幼虫的运动-2013。这些模拟不仅可以调查各个珊瑚礁的一般分散模式,还可以在各个产卵事件期间的异常情况可能导致与那些一般模式的偏差很大。这些数据还有助于识别由自播种的那些珊瑚礁,以及自种子被限制为确定它们对压力源和潜在障碍的相对敏感性的珊瑚礁。总体而言,数值模型结果表明,许多含有毛伊Nui种子珊瑚礁的珊瑚礁在邻近岛屿上,展示了毛伊维·Nui中珊瑚礁的相互连接,并为互联网设计提供了科学的基础的关键组成部分以加强珊瑚礁保护保护的MPA网络。

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