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Clean subglacial access: prospects for future deep hot-water drilling

机译:干净的冰川下通道:未来深层热水钻探的前景

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摘要

Accessing and sampling subglacial environments deep beneath the Antarctic Ice Sheet presents several challenges to existing drilling technologies. With over half of the ice sheet believed to be resting on a wet bed, drilling down to this environment must conform to international agreements on environmental stewardship and protection, making clean hot-water drilling the most viable option. Such a drill, and its water recovery system, must be capable of accessing significantly greater ice depths than previous hot-water drills, and remain fully operational after connecting with the basal hydrological system. The Subglacial Lake Ellsworth (SLE) project developed a comprehensive plan for deep (greater than 3000 m) subglacial lake research, involving the design and development of a clean deep-ice hot-water drill. However, during fieldwork in December 2012 drilling was halted after a succession of equipment issues culminated in a failure to link with a subsurface cavity and abandonment of the access holes. The lessons learned from this experience are presented here. Combining knowledge gained from these lessons with experience from other hot-water drilling programmes, and recent field testing, we describe the most viable technical options and operational procedures for future clean entry into SLE and other deep subglacial access targets.
机译:对南极冰盖深处的冰下环境进行访问和采样对现有的钻井技术提出了一些挑战。由于一半以上的冰盖被认为是放在湿床上,因此钻探到这种环境必须遵守有关环境管理和保护的国际协议,使清洁热水钻探成为最可行的选择。这种钻头及其水回收系统必须能够比以前的热水钻头获得更大的冰深,并且在与基础水文系统连接后仍能完全正常运行。冰河下埃尔斯沃思湖(SLE)项目制定了一项深度(大于3000 m)冰下湖研究的综合计划,其中涉及清洁深冰热水钻头的设计和开发。但是,在2012年12月的野外工作期间,由于一系列设备问题导致钻井无法停止,最终导致无法与地下空腔连接并放弃了检修孔。这里介绍了从这种经验中学到的教训。将这些课程中获得的知识与其他热水钻探计划的经验以及最近的现场测试相结合,我们描述了未来清洁地进入SLE和其他深部冰川下目标的最可行技术选择和操作程序。

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