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Semidiurnal Temperature Changes Caused by Tidal Front Movements in the Warm Season in Seabed Habitats on the Georges Bank Northern Margin and Their Ecological Implications

机译:乔治湾北缘海底生境暖季潮汐运动引起的半日温度变化及其生态学意义

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摘要

Georges Bank is a large, shallow feature separating the Gulf of Maine from the Atlantic Ocean. Previous studies demonstrated a strong tidal-mixing front during the warm season on the northern bank margin between thermally stratified water in the Gulf of Maine and mixed water on the bank. Tides transport warm water off the bank during flood tide and cool gulf water onto the bank during ebb tide. During 10 days in August 2009, we mapped frontal temperatures in five study areas along ∼100 km of the bank margin. The seabed “frontal zone”, where temperature changed with frontal movment, experienced semidiurnal temperature maxima and minima. The tidal excursion of the frontal boundary between stratified and mixed water ranged 6 to 10 km. This “frontal boundary zone” was narrower than the frontal zone. Along transects perpendicular to the bank margin, seabed temperature change at individual sites ranged from 7.0°C in the frontal zone to 0.0°C in mixed bank water. At time series in frontal zone stations, changes during tidal cycles ranged from 1.2 to 6.1°C. The greatest rate of change (−2.48°C hr−1) occurred at mid-ebb. Geographic plots of seabed temperature change allowed the mapping of up to 8 subareas in each study area. The magnitude of temperature change in a subarea depended on its location in the frontal zone. Frontal movement had the greatest effect on seabed temperature in the 40 to 80 m depth interval. Subareas experiencing maximum temperature change in the frontal zone were not in the frontal boundary zone, but rather several km gulfward (off-bank) of the frontal boundary zone. These results provide a new ecological framework for examining the effect of tidally-driven temperature variability on the distribution, food resources, and reproductive success of benthic invertebrate and demersal fish species living in tidal front habitats.
机译:乔治银行(Georges Bank)是一个大型浅层特征,将缅因湾与大西洋隔开。先前的研究表明,在暖季期间,在缅因湾热分层水与河岸混合水之间的北岸边缘,有一个强潮汐混合前沿。潮汐在潮汐潮汐中将温水运离河岸,潮汐退潮时将凉爽的海湾水运到河岸。在2009年8月的10天内,我们绘制了沿银行边界约100 km的五个研究区域的锋面温度。海底“额叶区”的温度随额叶运动而变化,经历了半日最高和最低温度。分层水和混合水之间的边界的潮汐偏移范围为6至10 km。该“额叶边界区”比额叶区窄。沿着垂直于河岸边缘的断面,单个站点的海底温度变化范围从额叶区域的7.0°C到混合河岸水中的0.0°C。在额带站的时间序列上,潮汐周期内的变化范围为1.2至6.1°C。最大的变化率(−2.48°C hr -1 )出现在退潮中期。海底温度变化的地理图可以在每个研究区域中绘制多达8个子区域的地图。分区中温度变化的幅度取决于其在额叶区域中的位置。在40至80 m的深度范围内,额海运动对海床温度的影响最大。在额叶区域经历最大温度变化的分区不在额叶边界区域内,而是额叶边界区域距河岸数公里(离岸)。这些结果为检验潮汐驱动的温度变化对生活在潮汐前线栖息地的底栖无脊椎动物和沉水鱼类物种分布,粮食资源和繁殖成功的影响提供了新的生态框架。

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