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A low resource subglacial bedrock sampler: The percussive rapid access isotope drill (P-RAID)

机译:低资源底纤维基岩采样器:打击乐快速接入同位素钻头(P-RAID)

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摘要

The paleoclimate community has an interest in distributed subglacial bedrock sampling but, while capable drill systems do exist, they are often incompatible with Twin Otter logistics aircraft. To address this issue, a design built on the existing low footprint ice-sampler, the Rapid Access Isotope Drill (RAID), is investigated. The new device will retain key features of the parent system, but the ice drilling elements of the RAID will be replaced by a self-contained rotary-percussive core-drill capable of penetrating ice-consolidated and rocky terrain at and below the ice/rock interface. This new front-end will only be deployed once the interface itself has been attained, providing a pristine core sample from the underlying terrain. The proposed Percussive Rapid Access Isotope Drill (P-RAID) has been inspired by planetary drilling technologies to allow autonomous operations at the bottom of the hole. This paper details the development and testing of the proof-of-concept hardware. The mechanical and electrical design challenges encountered, and the results obtained from a series of prolonged cold chamber tests will be discussed, alongside lessons learned from initial testing in Antarctica.
机译:古古镇社区对分布式底层基岩采样有兴趣,但在能干的钻探系统确实存在时,它们通常与双獭物流飞机不相容。为了解决这个问题,研究了在现有的低脚印冰采样器,快速接入同位素钻头(RAID)内置的设计。新设备将保留父系系统的关键特征,但突袭的冰钻元件将被一个独立的旋转式核心钻头代替,该旋转核心钻头能够穿透冰/岩层和下方的冰块和岩石地形界面。一旦界面本身已经实现,才会部署此新的前端,从而提供来自底层地形的原始核心样本。所提出的打击速度访问同位素钻头(P-RAID)受到行星钻井技术的启发,以允许孔底部的自主操作。本文详述了概念证明硬件的开发和测试。遇到的机械和电气设计挑战以及从一系列延长的冷室测试中获得的结果,以及从南极初始测试中学到的课程。

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