首页> 外文期刊>Journal of operational oceanography >Temperature and light patterns at four reefs along the Great Barrier Reef during the 2015-2016 austral summer: understanding patterns of observed coral bleaching
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Temperature and light patterns at four reefs along the Great Barrier Reef during the 2015-2016 austral summer: understanding patterns of observed coral bleaching

机译:2015-2016南方夏季大堡礁沿岸四个珊瑚礁的温度和光照模式:了解观察到的珊瑚褪色的模式

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摘要

Data from real-time sensor networks along the Great Barrier Reef (GBR) over the 2015-2016 austral summer showed that reef water temperatures exceeded empirical coral bleaching thresholds at a number of sites. Temperatures in the southern GBR were within historically normal limits with temperatures below the empirical bleaching threshold. The central GBR just reached the empirical bleaching threshold while, in the north, Lizard Island recorded four consecutive days above the bleaching threshold. Thursday Island in the far northern GBR experienced 10 days above the bleaching threshold. The in situ data predicted only slight bleaching in the southern GBR, moderate bleaching in the central GBR, widespread bleaching in the north and severe bleaching in the far north, which compares well with the initial survey data. Peak temperatures occurred later in the year in the north (mid-March 2016) than in the south (early February 2015) with temperatures remaining above the long-term mean well into the austral autumn. Comparison against satellite sea surface temperature data highlighted issues of cloud cover with data only being available for 30-40% of days over the summer. While the agreement with the in situ data was good, the satellite data missed fine-scale events and under-estimated the event at Thursday Island.
机译:来自大堡礁(GBR)的实时传感器网络在2015-2016年夏季的数据显示,在许多地点,礁石水温超过了经验性的珊瑚白化阈值。 GBR南部的温度在历史正常范围内,且温度低于经验漂白阈值。中央GBR刚好达到经验漂白阈值,而在北部,蜥蜴岛连续第四天超过漂白阈值。 GBR北部的星期四岛经历了超过漂白阈值10天的情况。原位数据预测,GBR南部只会出现轻微的漂白,GBR中央会出现中等的漂白,北部出现广泛的漂白,而远北出现严重的漂白,这与最初的调查数据相比具有很好的对比。北部(2016年3月中旬)的峰值温度晚于南部(2015年2月上旬),最高温度一直保持到南半球秋季。与卫星海面温度数据的比较突出了云层覆盖的问题,该数据仅在夏季的30-40%天内可用。尽管与原位数据的协议很好,但卫星数据错过了小规模事件,并低估了星期四岛的事件。

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