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首页> 外文期刊>The Cryosphere Discussions >Airborne mapping of the sub-ice platelet layer under fast ice in McMurdo Sound, Antarctica
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Airborne mapping of the sub-ice platelet layer under fast ice in McMurdo Sound, Antarctica

机译:在McMurdo Sound,南极洲快速冰下的亚冰血小板层的空中映射

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摘要

Basal melting of ice shelves can result in the outflow of supercooled ice shelf water, which can lead to the formation of a sub-ice platelet layer (SIPL) below adjacent sea ice. McMurdo Sound, located in the southern Ross Sea, Antarctica, is well known for the occurrence of a SIPL linked to ice shelf water outflow from under the McMurdo Ice Shelf. Airborne, single-frequency, frequency-domain electromagnetic induction (AEM) surveys were performed in November of 2009, 2011, 2013, 2016, and 2017 to map the thickness and spatial distribution of the landfast sea ice and underlying porous SIPL. We developed a simple method to retrieve the thickness of the consolidated ice and SIPL from the EM in-phase and quadrature components, supported by EM forward modelling and calibrated and validated by drill-hole measurements. Linear regression of EM in-phase measurements of apparent SIPL thickness and drill-hole measurements of “true” SIPL thickness yields a scaling factor of 0.3 to 0.4 and rms error of 0.47? m . EM forward modelling suggests that this corresponds to SIPL conductivities between 900 and 1800? mS?m ?1 , with associated SIPL solid fractions between 0.09 and 0.47. The AEM surveys showed the spatial distribution and thickness of the SIPL well, with SIPL thicknesses of up to 8? m near the ice shelf front. They indicate interannual SIPL thickness variability of up to 2? m . In addition, they reveal high-resolution spatial information about the small-scale SIPL thickness variability and indicate the presence of persistent peaks in SIPL thickness that may be linked to the geometry of the outflow from under the ice shelf.
机译:冰架的基础熔化可能导致过冷冰块水的流出,这可能导致相邻海冰下方的亚冰血小板层(SIPL)。位于南极洲南罗斯海的McMurdo声音是众所周知的,它被众所周知,SIP与McMurdo冰架下面的冰块水流出。机载,单频,频域电磁感应(AEM)调查于2009年11月,2011年11月,2011年11月进行,以映射陆地海冰和底层多孔SIPL的厚度和空间分布。我们开发了一种简单的方法,可以通过EM转发建模和校准和通过钻孔测量校准并验证,从EM同相和正交组分中检索综合冰和SIP的厚度。表观SIPL厚度的EM同相测量的线性回归和“真实”SIPL厚度的钻孔测量结果产生0.3至0.4的缩放因子,rms误差为0.47? m。 EM EXPROESE模型表明,这对应于900到1800之间的SIPL导电性? MS?M?1,相关的SIPL固体馏分在0.09和0.47之间。 AEM调查显示SIPL井的空间分布和厚度,最高可达8的SIPL厚度?在冰架前面靠近冰架。它们表示持续的SIPL厚度可变性最多2? m。此外,它们揭示了关于小规模SIPL厚度变异性的高分辨率空间信息,并指示SIPL厚度持续峰的存在,其可以与来自冰架下方的流出的几何形状连接。

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