首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Inferring probable dispersal of Flower Garden Banks Coral Larvae (Gulf of Mexico) using observed and simulated drifter trajectories
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Inferring probable dispersal of Flower Garden Banks Coral Larvae (Gulf of Mexico) using observed and simulated drifter trajectories

机译:使用观测和模拟的漂流轨迹推断花园银行珊瑚幼虫(墨西哥湾)的可能扩散

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We investigated likely coral larvae dispersal in the Gulf of Mexico by means of a combination of satellite-tracked drifters and simulated currents. Drifter data were collected during spawning events in 1997 and 1998 at the Flower Garden Banks (FGB) and from the "Surface Current and Lagrangian Drift Program" in 1993 (Niiler et al., Surface current and langrangian-drift program. Unpublished Report, U.S. Department of the Interior, Minerals Management Service, 1997, 10pp). Observed and simulated tracks showed that likely coral dispersal is driven by five circulation modes. Mode 1 is a cyclonic motion reaching the Texas shelf and possible cyclonic motion along the shelf toward Mexico. Mode 2 is an entrainment by offshore eddies causing likely larval transport into deep water (> 200 m). Mode 3 consists of a continuous eastward movement that reaches 87.5 degreesW. Mode 4 consists of recirculating hows over or near the FGB. Mode 5 is a cross-basin transport that ends near the Florida Keys in 50-60 days. Modes 1 and 4 can bring larvae back to the FGB within 24-30 days after spawning creating conditions for self-seeding. Offshore eddies near the FGB, Modes 2 and 5, generate offshore transport that can carry coral larvae to reefs in Mexico and Florida. Only similar to 43% of the drifters leave the northwestern Gulf shelf, which implies that most coral larvae can remain on the shelf through Modes I, 3, and 4. Mode 3 suggests eastward larval dispersal and under influence of the Mississippi River plume where they can be adversely affected by low salinity, low temperature, and high sedimentation which limit recruitment on oil and gas platforms. possible effects of hurricanes on larval dispersal include reduced travel time, considerable displacements, and physical damage by strong turbulence. Nineteen outer shelf banks were contacted by actual and simulated drifter tracks, but only 10 are suitable for coral larvae settlement given the substrate and crest depth. These 10 banks could represent a doubling of reef area relative to the FGB, i.e., 5.35 km(2) shallower than 55 m, if successfully colonized by coral larvae. Drifter tracks also contacted 129 major oil and gas fixed platforms. Potential larvae recruitment by these contacts could increase the reef area in the northwestern Gulf by 38% compared to the FGB, and support eastward propagation of corals. A majority of actual and simulated drifter contacts occurs within 40 km of the FGB; contacts increased at 70 km and beyond 150 km from the FGB. This contact distribution suggest a high potential for self-seeding, and connectivity of Gulf reefs at long time scales. (C) 2001 Published by Elsevier Science Ltd. [References: 63]
机译:我们通过结合卫星追踪的流浪者和模拟水流,研究了墨西哥湾可能发生的珊瑚幼虫扩散情况。漂移者数据是在1997年和1998年在花卉园河岸(FGB)产卵期间收集的,并且是从1993年的“地表流和拉格朗日漂移方案”中收集的(Niiler等人,《地表流和朗格朗日漂移》程序。未发表,美国内政部,矿物管理处,1997年,第10页)。观察和模拟的轨迹表明,可能的珊瑚扩散是由五种循环模式驱动的。模式1是到达德克萨斯大陆架的气旋运动,以及沿着该大陆架向墨西哥的可能的气旋运动。模式2是近海涡流的夹带,可能导致幼体向深水(> 200 m)的运输。模式3由连续的向东运动组成,达到87.5度W。模式4包括再循环FGB上方或附近的方式。模式5是跨流域运输,在50至60天内终止于佛罗里达礁岛附近。模式1和4可以在产卵后24-30天内将幼虫带回FGB,从而为自种创造条件。 FGB模式2和5附近的近海涡流产生了可以将珊瑚幼体运送到墨西哥和佛罗里达的珊瑚礁的近海运输。仅约43%的漂流者离开西北海湾搁板,这意味着大多数珊瑚幼虫可通过模式I,模式3和模式4留在搁架上。模式3表明,幼体向东扩散并受到密西西比河羽流的影响低盐度,低温和高沉积会不利地影响石油和天然气平台的开采。飓风对幼虫扩散的可能影响包括旅行时间减少,大量位移以及强湍流对人身造成的损害。实际和模拟的漂流轨道与19个外部搁板堤接触,但考虑到底物和波峰深度,只有10个适合于珊瑚幼虫的沉降。如果成功地被珊瑚虫幼虫定殖,那么这10个堤岸相对于FGB可能意味着礁石面积的两倍,即比55 m浅5.35 km(2)。漂流道也接触了129个主要的油气固定平台。与FGB相比,这些接触可能招募到的幼体可能使西北海湾的礁石面积增加38%,并支持珊瑚向东传播。大多数实际的和模拟的漂移器接触发生在FGB的40 km之内;与FGB的距离增加了70公里,超过了150公里。这种接触分布表明,自长期播种的可能性很高,而且在很长的时间范围内,海湾珊瑚礁也具有连通性。 (C)2001年由Elsevier Science Ltd.发布。[参考:63]

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