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Technological aspects of the final phase of drilling borehole 5G and unsealing Vostok Subglacial Lake, East Antarctica

机译:南极东部5G钻孔和启封Vostok冰川湖最后阶段的技术方面

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This paper considers the state of the deep ice borehole 5G at the Russian Antarctic Vostok station after penetration to the surface water of Vostok Subglacial Lake. It discusses the peculiar features of drilling the 'fresh frozen' lake water that has risen in the borehole and the technology for subsequent study of the lake water layer via borehole 5G filled with a kerosene-Freon~? mixture. The extremely high rise of lake water via the borehole is attributed to a hydraulic fracture at the side of the borehole, which diverted a large amount of drilling fluid. The proposed technology for the study of the water layer envisages minimal environmental impact and excludes penetration of any of the kerosene-Freon~? mixture to the water layer. This technology has been presented several times at different international forums. There was no critical comment on the Environmental Impact Assessment of the technology at the 37th Antarctic Treaty Consultative Meeting in 2014 and it was adopted for implementation.
机译:本文考虑了俄罗斯南极Vostok站渗透到Vostok冰川湖地表水后的深冰钻孔5G的状态。它讨论了钻探在井眼中上升的“新鲜冰冻”湖水的特殊特征,以及通过填充有煤油-氟利昂的5G井眼对湖水层进行后续研究的技术。混合物。经由钻孔的湖水的极高上升归因于钻孔侧面的水力压裂,这使大量钻井液分流。研究水层的拟议技术对环境的影响最小,并且排除了任何煤油-氟利昂的渗透。混合到水层。在不同的国际论坛上已经多次展示了该技术。在2014年的第37届南极条约协商会议上,对该技术的环境影响评估没有批评意见,该评论已被采纳并实施。

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