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In-situ measurements of the direct-current conductivity of Antarctic sea ice: implications for airborne electromagnetic sounding of sea-ice thickness

机译:现场测量南极海冰的直流电导率:对海冰厚度的空气电磁探测的影响

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摘要

Airborne, ship-borne and surface low-frequency electromagnetic (EM) methods have become widely applied to measure sea-ice thickness. EM responses measured over sea ice depend mainly on the sea-water conductivity and on the height of the sensor above the sea-icesea-water interface, but may be sensitive to the sea-ice conductivity at high excitation frequencies. We have conducted in situ measurements of direct-current conductivity of sea ice using standard geophysical geoelectrical methods. Sea-ice thickness estimated from the geoelectrical sounding data was found to be consistently underestimated due to the pronounced vertical-to-horizontal conductivity anisotropy present in level sea ice. At five sites, it was possible to determine the approximate horizontal and vertical conductivities from the sounding data. The average horizontal conductivity was found to be 0.017 Sm1, and that in the vertical direction to be 912 times higher. EM measurements over level sea ice are sensitive only to the horizontal conductivity. Numerical modelling has shown that the assumption of zero sea-ice conductivity in interpretation of airborne EM data results in a negligible error in interpreted thickness for typical level Antarctic sea ice.
机译:机载,船载和地面低频电磁(EM)方法已广泛应用于测量海冰厚度。在海冰上测得的电磁响应主要取决于海水的电导率和传感器在海冰与海水界面上方的高度,但在高激发频率下可能对海冰的电导率敏感。我们已经使用标准地球物理地电方法对海冰的直流电导率进行了现场测量。由于海平面海冰中存在明显的垂直-水平电导率各向异性,因此根据地电测深数据估算出的海冰厚度一直被低估。在五个位置,可以从探测数据确定大致的水平和垂直电导率。发现平均水平电导率为0.017 Sm1,而垂直方向的平均电导率为912倍。在水平海冰上的电磁测量仅对水平电导率敏感。数值模型表明,对于典型的南极海冰,在航空电磁数据解释中假设海冰电导率为零,导致解释厚度的误差可忽略不计。

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