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WAVE CONTROL ON REEF MORPHOLOGY AND CORAL DISTRIBUTION: MOLOKAI, HAWAII

机译:礁形态和珊瑚分布的波控制:夏威夷莫洛凯

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A multi-disciplinary project lead by the U.S. Geological Survey is currently studying the fringing reef off southern Molokai, Hawaii, in an effort to characterize the biological structure and geologic variability of coral reef systems. Wave modeling and field observations were utilized to help understand the physical controls on reef morphology and the distribution of coral species. The morphology of the reef crest, which extends roughly 50 km from east to west and up to 1500 m offshore, appears to be primarily controlled by the amount of wave energy impinging on the coastline. Extratropical cyclones and inter-anticyclonic systems crossing the North Pacific during the winter months generate the wave energy regime that appears to dominate the reef. This North Pacific swell generates near-bed orbital velocities greater than 3.0 m/sec and shear stresses greater than 2.5 N/m~2 that inhibit substantial coral development in shallow water (<10 m). The reef is sheltered from these waves by the island of Molokai; however, refraction around the east and west ends of the island cause the reef crest to pinch out roughly 5 km from each end of the island. Where the reef crest merges into the shoreline, more robust high-energy corals and low coral cover typify the fore reef. In contrast, more delicate branching corals characterize the central portion of the reef, which is sheltered from the large North Pacific swell, and up to 80% live coral cover.
机译:由美国地质调查局牵头的一项多学科项目目前正在研究夏威夷南部莫洛凯州南部的边缘礁,以期表征珊瑚礁系统的生物结构和地质变异性。利用波浪建模和现场观察来帮助理解对礁石形态和珊瑚物种分布的物理控制。礁顶的形态从东向西延伸约50公里,至近海1500 m,似乎主要受到撞击在海岸线上的波能的控制。在冬季,越过北太平洋的温带气旋和反气旋系统产生了似乎主导珊瑚礁的波浪能状态。北太平洋海浪产生的近床轨道速度大于3.0 m / sec,剪切应力大于2.5 N / m〜2,从而抑制了浅水区(<10 m)的大量珊瑚发育。莫洛凯岛(Molokai)岛使珊瑚礁免受了海浪的袭击。但是,岛的东,西端周围的折射会导致礁顶从岛的两端向外挤压约5公里。在礁顶融合到海岸线的地方,前礁是典型的更强壮的高能珊瑚和低珊瑚盖。相比之下,更细小的分支珊瑚代表了礁石的中心部分,该中心被北太平洋的大浪所掩盖,多达80%的活珊瑚被遮盖。

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