首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Sea-ice melting processes inferred from ice–upper ocean relationships in the Ross Sea, Antarctica
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Sea-ice melting processes inferred from ice–upper ocean relationships in the Ross Sea, Antarctica

机译:从南极罗斯海的冰-上海洋关系推断出海冰融化过程

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摘要

Sea-ice melting processes are inferred from various summer sea-ice and upper ocean data obtained in the Ross Sea in January 1999. Using spatially (30 km) averaged continuous data, an ice concentration–water temperature plot (CT-plot) shows that the temperature at a depth of ~7 m increases as ice concentration decreases in the ice interior region. The CT-plot is explained by a simple ice–upper ocean coupled model in which sea-ice melting is caused only by heat input through open water. The bulk heat transfer coefficient between ice and ocean (K b ) is estimated to be 1.2 × 10-4 m s-1. These findings are supported by the relationship between ice concentration and heat content in the mixed layer estimated from conductivity-temperature-depth (CTD) data. Salinity at a depth of ~7 m, salt deficit in the mixed layer associated with sea-ice melt estimated from CTD data, and their relationships with ice concentration also suggest that melting is mainly caused by atmospheric heat input through open water and that local balance of salinity nearly hold. The time evolution of ice concentration calculated from the ice–upper ocean coupled model with the estimated K b corresponds with that derived from the Special Sensor Microwave Imager (SSM/I), confirming the model's applicability and the value of K b .
机译:从1999年1月在罗斯海获得的各种夏季海冰和上层海洋数据推断出海冰融化过程。使用空间(30公里)平均连续数据,冰浓度-水温图(CT图)显示:随着内部冰浓度的降低,〜7 m深度的温度升高。 CT图由一个简单的冰上海洋耦合模型解释,其中海冰融化仅由通过开放水域输入的热量引起。冰与海洋之间的总传热系数(K b)估计为1.2×10-4 m s-1。根据电导率-温度-深度(CTD)数据估算的混合层中冰浓度与热含量之间的关系为这些发现提供了支持。约7 m的盐度,根据CTD数据估算的与海冰融化有关的混合层中的盐分缺乏及其与冰浓度的关系也表明,融化主要是由露天水输入的大气热量和局部平衡引起的。盐度几乎成立。根据冰海-海洋耦合模型和估计的K b计算出的冰浓度的时间演变与从特殊传感器微波成像仪(SSM / I)得出的时间演变相对应,从而确认了该模型的适用性和K b的值。

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