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2002-03 Florida Keys National Marine Sanctuary science report: An ecosystem report card after five years of marine zoning

机译:2002-03佛罗里达礁岛国家海洋保护区科学报告:海洋分区五年后的生态系统报告卡

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摘要

Executive Summary:ududCirculation and Exchange of Florida Bay and South Florida udCoastal Waters ududThe coastal ecosystem of South Florida is comprised of distinct marine environments. Circulation of surface waters and exchange processes, which respond to both local and regional forcings, interconnect different coastal environments. In addition, re-circulating current systemsudwithin the South Florida coastal ecosystem such as the Tortugas Gyre contribute to retention of locally spawned larvae.ududVariability in salinity, chlorophyll, and light transmittance occurs on a wide range of temporal and spatial scales, in response to both natural forcing, such as seasonal precipitation and evaporation and interannual “El Niño” climate signals, and anthropogenic forcing, such as water management practices in south Florida. The full time series of surface property maps are posted at www.aoml.noaa.gov/sfp.ududRegional surface circulation patterns, shown by satellite-tracked surface drifters, respond to large-scale forcing such as wind variability and sea level slopes. Recent patterns include slow flow from near the mouth of the Shark River to the Lower Keys, rapid flow from the Tortugas toudthe shelf of the Carolinas, and flow from the Tortugas around the Tortugas Gyre and out of the Florida Straits.ududThe Southwest Florida Shelf and the Atlantic side of the Florida Keys coastal zone are directly connected by passages between the islands of the Middle and Lower Keys. Movement of water between these regions depends on a combination of local wind-forced currents and gravitydrivenudtransports through the passages, produced by cross-Key sea level differences on time scales of several days to weeks, which arise because of differences in physical characteristics (shape, orientation, and depth) of the shelf on either side of the Keys. A southeastward meanudflow transports water from western Florida Bay, which undergoes large variations in water quality, to the reef tract.ududAdequate sampling of oceanographic events requires both the capability of near real-time recognition of these events, and the flexibility to rapidly stage targeted field sampling. Capacity to respond to events is increasing, as demonstrated by investigations of the 2002 “blackwater”udevent and a 2003 entrainment of Mississippi River water to the Tortugas. (PDF contains 364 pages.)
机译:执行摘要:佛罗里达湾和南佛罗里达的流通与交换ud沿海水域ud南海岸生态系统由独特的海洋环境组成。地表水的循环和交换过程对地方和区域的强迫都作出了反应,使不同的沿海环境相互联系。此外,南佛罗里达沿海生态系统内的循环系统,例如Tortugas Gyre,有助于保留本地产卵的幼体。 ud ud盐度,叶绿素和透光率的变化在很大的时空范围内发生,以响应自然强迫(例如季节性降水和蒸发以及每年两次的“厄尔尼诺”气候信号)和人为强迫(例如南佛罗里达州的水管理实践)。表面特性图的全时序列发布在www.aoml.noaa.gov/sfp.udud卫星跟踪的表面漂移器显示的区域表面环流模式对风的变化和海平面等大规模强迫做出了响应连续下坡。最近的模式包括从鲨鱼河口附近到下礁岛的缓慢流动,从龟甲到卡罗莱纳州架子的急流,以及从龟甲绕着龟头涡流并流出佛罗里达海峡的气流。 ud西南佛罗里达架和佛罗里达礁岛沿岸带的大西洋一侧通过中,低礁岛之间的通道直接相连。这些区域之间的水运动取决于局部风流和重力驱动的 ud穿越通道的组合,这是由于跨关键海平面在几天到几周的时间尺度上产生的差异而产生的,这是由于物理特征的差异而引起的(形状,方向和深度)。东南向均值 udflow将水质发生较大变化的佛罗里达州西部海湾的水运到珊瑚礁中。 ud ud对海洋事件的充分采样既需要对这些事件进行近实时识别的能力,又需要灵活性快速进行目标现场采样。对2002年“黑水” udevent和2003年密西西比河水夹带到Tortugas的调查表明,对事件的反应能力正在增强。 (PDF包含364页。)

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  • 正文语种 {"code":"en","name":"English","id":9}
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