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Glaciological characteristics in the Dome Fuji region and new assessment for “Oldest Ice”

机译:富士巨蛋地区的冰川特征和“最古老的冰”的新评估

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A key objective in palaeo-climatology is the retrieval of a continuous Antarctic ice-core record dating back 1.5?Ma. The identification of a suitable Antarctic site requires sufficient knowledge of the subglacial landscape beneath the Antarctic Ice Sheet. Here, we present new ice thickness information from the Dome Fuji region, East Antarctica, based on airborne radar surveys conducted during the 2014/15 and 2016/17 southern summers. Compared to previous maps of the region, the new dataset shows a more complex landscape with networks of valleys and mountain plateaus. We use the new dataset as input in a thermokinematic model that incorporates uncertainties in geothermal heat flux values in order to improve the predictions of potential ice-core sites. Our results show that especially the region immediately south of Dome Fuji station persists as a good candidate site for obtaining an old ice core. An initial assessment of basal conditions revealed the existence of what appears to be subglacial lakes. Further radar data analysis shows overall high continuity of layer stratigraphy in the region. This indicates that extending the age–depth information from the Dome Fuji ice core to a new ice-core drill site is a viable option.
机译:古气候学的一个主要目标是获取连续的南极冰芯记录,其历史可追溯到1.5?Ma。确定合适的南极地点需要对南极冰盖下的冰下景观有足够的了解。在此,我们根据2014/15和2016/17南部夏季进行的机载雷达调查,提供了南极东部圆顶富士地区的新冰厚信息。与该地区以前的地图相比,新的数据集显示了更为复杂的地形,包括山谷和高山高原的网络。我们使用新的数据集作为热运动学模型的输入,该模型结合了地热通量值的不确定性,以改善对潜在冰芯站点的预测。我们的结果表明,尤其是圆顶富士站以南的地区仍然是获得旧冰芯的良好候选地点。对基础条件的初步评估表明,似乎存在冰下湖泊。进一步的雷达数据分析显示了该地区地层的整体高度连续性。这表明将年龄深度信息从Dome Fuji冰芯扩展到新的冰芯钻孔站点是可行的选择。

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