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Observational analysis of the double-diffusive convection in the deep Canada Basin

机译:加拿大深部盆地双扩散对流的观测分析

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摘要

The Canada Basin (CB) is the largest sub-basin in the Arctic, with the deepest abyssal plain of 3 850 m. The double-diffusive process is the possible passage through which the geothermal energy affects the above isolated deep waters. With the temperature-salinity-pressure observations in 2003, 500-m-thick transition layers and lower 1 000-m-thick bottom homogenous layers were found below 2 400 m in the central deep CB. Staircases with downward-increasing temperature and salinity are prominent in the transition layers, suggesting the double-diffusive convection in deep CB. The interface of the stairs is about 10 m thick with 0.001–0.002°C temperature difference, while the thicknesses of the homogenous layers in the steps decrease upward from about 60 to 20 m. The density ratio in the deep central CB is generally smaller than 2, indicating stronger double-diffusive convection than that in the upper ocean of 200–400 m. The heat flux through the deepest staircases in the deep CB varies between 0.014 and 0.031 W/m2, which is one-two orders smaller than the upper double-diffusive heat flux, but comparable to the estimates of geothermal heat flux.
机译:加拿大盆地(CB)是北极最大的次流域,最深的深海平原为3 850 m。双扩散过程是地热能影响上述孤立的深水的可能途径。根据2003年的温度盐度压力观测,在中部深部CB的2 400 m以下发现了500 m厚的过渡层和较低的1 000 m厚的底部均质层。温度和盐度向下升高的楼梯在过渡层中突出,表明深层CB中的双扩散对流。楼梯的界面厚约10 m,温度差为0.001–0.002°C,而台阶中均匀层的厚度则从约60 m减小到20 m。深部中部CB的密度比通常小于2,表明比200-400 m上部海洋中的双扩散对流更强。通过深部CB中最深楼梯的热通量在0.014至0.031 W / m2之间变化,比上部双扩散热通量小1-2个数量级,但与地热通量的估算值相当。

著录项

  • 来源
    《海洋学报(英文版)》 |2015年第11期|71-79|共9页
  • 作者单位

    Guangdong Province Key Laboratory for Coastal 0cean Variation and Disaster Prediction GL0D, Guangdong 0cean University, Zhanjiang 524088, China;

    Guangdong Province Key Laboratory for Coastal 0cean Variation and Disaster Prediction GL0D, Guangdong 0cean University, Zhanjiang 524088, China;

    Guangdong Province Key Laboratory for Coastal 0cean Variation and Disaster Prediction GL0D, Guangdong 0cean University, Zhanjiang 524088, China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-19 03:57:54
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