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Heat accumulation on coral reefs mitigated by internal waves

机译:内部波缓解珊瑚礁上的热量

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摘要

Coral reefs are among the most species-rich, productive and economically valuable ecosystems on Earth but increasingly frequent pantropical coral bleaching events are threatening their persistence on a global scale. The 2015-2016 El Nino led to the hottest sea surface temperatures on record and widespread bleaching of shallow-water corals. However, the causes of spatial variation in bleaching are poorly understood, and near-surface estimates of heat stress, such as those inferred from satellites, cannot be generalized across the broad depth ranges occupied by corals. Here, using in situ temperatures recorded across reefs from the near surface to 30-50 m depths in the western, central and eastern Pacific, we show that during the peak of the 2015-2016 anomaly, temperature fluctuations associated with internal waves reduced cumulative heat exposure by up to 88%. The durations of severe thermal anomalies above 8 degrees C-days, at which point widespread coral bleaching and mortality are likely, were also decreased by >36% at some sites and were prevented entirely at others. The impact of internal waves across depths on coral reefs has the potential to create and support thermal refuges in which heat stress and coral bleaching risk may be modulated, but future effects depend on the response of internal wave climates to continued warming and strengthening ocean stratification.
机译:珊瑚礁是地球上最丰富的,生产性和经济价值有价值的生态系统之一,但越来越常见的岩浆珊瑚漂白事件在全球范围内威胁着他们的持久性。 2015-2016 EL NINO导致了浅水珊瑚的记录和广泛漂白的最热门海面温度。然而,漂白时的空间变化的原因是较差的,并且热应力的近表面估计,例如从卫星推断的那些,不能穿过珊瑚占据的广泛深度范围。在这里,在西部,中央和东部地区的近地表横跨珊瑚礁中记录的原位温度,我们展示了在2015 - 2016年异常的高峰期间,与内部波有关的温度波动减少了累积热量暴露高达88%。在8摄氏度高于8摄氏度以上的严重热异常的持续时间,在某些地点也在含有广泛的珊瑚漂白和死亡率,在某些地点下降> 36%,并完全防止他人。内部波对珊瑚礁的深度的影响有可能创造和支持热避难,其中可以调节热应激和珊瑚漂白风险,但未来的影响取决于内波气候的响应继续加热和加强海洋分层。

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  • 来源
    《Nature geoscience》 |2020年第1期|共9页
  • 作者单位

    Hong Kong Univ Sci &

    Technol Dept Ocean Sci Kowloon Clear Water Bay Hong Kong Peoples R China;

    Univ Calif San Diego Scripps Inst Oceanog La Jolla CA 92093 USA;

    US Geol Survey St Petersburg FL USA;

    Univ Tokyo Atmosphere &

    Ocean Res Inst Dept Chem Oceanog Kashiwa Chiba Japan;

    Florida Inst Technol Dept Ocean Engn &

    Marine Sci Melbourne FL 32901 USA;

    Univ Tokyo Atmosphere &

    Ocean Res Inst Dept Chem Oceanog Kashiwa Chiba Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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