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Ship-borne electromagnetic induction sounding of sea-ice thickness in the southern Sea of Okhotsk

机译:鄂霍次克州南部海冰厚度的船载电磁感应测深

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摘要

Recent observations have revealed that dynamical thickening is dominant in the growth process of sea ice in the southern Sea of Okhotsk. That indicates the importance of understanding the nature of thick deformed ice in this area. The objective of the present paper is to establish a ship-based method for observing the thickness of deformed ice with reasonable accuracy. Since February 2003, one of the authors has engaged in the core sampling using a small basket from the icebreaker Soya. Based on these results, we developed a new model which expressed the internal structure of pack ice in the southern Sea of Okhotsk, as a one-dimensional multilayered structure. Since 2004, the electromagnetic (EM) inductive sounding of sea-ice thickness has been conducted on board Soya. By combining the model and theoretical calculations, a new algorithm was developed for transforming the output of the EM inductive instrument to ice + snow thickness (total thickness). Comparison with total thickness by drillhole observations showed fair agreement. The probability density functions of total thickness in 2004 and 2005 showed some difference, which reflected the difference of fractions of hick deformed ice.
机译:最近的观察表明,在鄂霍次克海南部海冰的生长过程中,动态增厚是主要的。这表明了了解该区域厚形变形冰的性质的重要性。本文的目的是建立一种基于船的方法,以合理的精度观测变形冰的厚度。自2003年2月以来,一位作者使用破冰船Soya的一个小篮子进行了核心采样。基于这些结果,我们开发了一个新模型,该模型以一维多层结构表示鄂霍次克海南部的浮冰内部结构。自2004年以来,在大豆船上进行了海冰厚度的电磁感应测深。通过将模型和理论计算相结合,开发了一种新算法,用于将电磁感应仪器的输出转换为冰+雪厚度(总厚度)。通过钻孔观察与总厚度的比较显示出相当的一致性。 2004年和2005年总厚度的概率密度函数显示出一定的差异,这反映了陡峭变形冰的分数差异。

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