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. 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 Perc...
Abstract. The Rapid Access Ice Drill (RAID) is designed for subsurface scientific investigations in ...
International audienceAbstract Using significant technological breakthroughs and unconventional appr...
Accessing and sampling subglacial environments deep beneath the Antarctic Ice Sheet presents several...
Abstract The Rapid Access Ice Drill (RAID) was designed and built to rapidly drill th...
The British Antarctic Survey Rapid Access Isotope Drill is an innovative new class of electromechani...
AbstractRapid Access Ice Drill is a new drilling technology capable of quickly accessing the glacial...
ABSTRACTA new Rapid Access Ice Drill (RAID) will penetrate the Antarctic ice sheets in order to crea...
International audienceIn response to the 'oldest ice' challenge initiated by the International Partn...
In response to the 'oldest ice' challenge initiated by the International Partnerships in Ice Core Sc...
Abstract: We propose that a new type of drill, alternately known as a Fast Mechanical-Access Drill, ...
Using significant technological breakthroughs and unconventional approaches, the goal of the in situ...
Accumulations of sediment beneath the Antarctic Ice Sheet contain a range of physical and chemical p...
The British Antarctic Survey, in collaboration with Laboratoire de Glaciologie et Géophysique de l’...
To understand the long-term climate and glaciological evolution of the ice sheet in the region borde...
Accumulations of sediment beneath the Antarctic Ice Sheet contain a range of physical and chemical p...
Abstract. The Rapid Access Ice Drill (RAID) is designed for subsurface scientific investigations in ...
International audienceAbstract Using significant technological breakthroughs and unconventional appr...
Accessing and sampling subglacial environments deep beneath the Antarctic Ice Sheet presents several...
Abstract The Rapid Access Ice Drill (RAID) was designed and built to rapidly drill th...
The British Antarctic Survey Rapid Access Isotope Drill is an innovative new class of electromechani...
AbstractRapid Access Ice Drill is a new drilling technology capable of quickly accessing the glacial...
ABSTRACTA new Rapid Access Ice Drill (RAID) will penetrate the Antarctic ice sheets in order to crea...
International audienceIn response to the 'oldest ice' challenge initiated by the International Partn...
In response to the 'oldest ice' challenge initiated by the International Partnerships in Ice Core Sc...
Abstract: We propose that a new type of drill, alternately known as a Fast Mechanical-Access Drill, ...
Using significant technological breakthroughs and unconventional approaches, the goal of the in situ...
Accumulations of sediment beneath the Antarctic Ice Sheet contain a range of physical and chemical p...
The British Antarctic Survey, in collaboration with Laboratoire de Glaciologie et Géophysique de l’...
To understand the long-term climate and glaciological evolution of the ice sheet in the region borde...
Accumulations of sediment beneath the Antarctic Ice Sheet contain a range of physical and chemical p...
Abstract. The Rapid Access Ice Drill (RAID) is designed for subsurface scientific investigations in ...
International audienceAbstract Using significant technological breakthroughs and unconventional appr...
Accessing and sampling subglacial environments deep beneath the Antarctic Ice Sheet presents several...