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首页> 外文期刊>Annals of Glaciology >Thermal electric ice-core drills: history and new design options for intermediate-depth drilling
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Thermal electric ice-core drills: history and new design options for intermediate-depth drilling

机译:热电冰芯钻:中深度钻探的历史和新设计选择

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摘要

Ice coring of temperate and polythermal glaciers demonstrates some limitations of most electromechanical (EM) and thermal electric (TE) drills. Most TE drills are heavy, require a heavy power system, work slowly and cannot operate in boreholes going through the cold-temperate ice transition. Antifreeze thermal electric drills (ATED) are capable of operating in polar ice caps, polythermal and temperate glaciers, in boreholes filled with water and/or hydrophilic fluids. Performance of the ATED drill can be improved by using an open-top core barrel and low-power and narrow-kerf coring head. ATED-type drills can be modified for an open-top core barrel equipped with low-power coring head and include a new scheme for drilling-fluid circulation using two pumps. A small metering pump releases pure ethanol above the top of the drill, and a second pump enables circulation of the borehole fluid, an ethanol-water solution (EWS), above the kerf. Use of a narrow-kerf coring head reduces power requirements and makes it possible to design a lightweight drilling system that includes the EM and TE drills for shallow and intermediate-depth drilling.
机译:温带和多冰川冰川的取冰演示了大多数机电钻(EM)和热电钻(TE)的一些局限性。大多数TE钻都很沉重,需要笨重的动力系统,工作缓慢,并且无法在通过冷温冰过渡的钻孔中运行。防冻电热钻(ATED)能够在极地冰盖,多温带和温带冰川中,充满水和/或亲水性流体的钻孔中运行。 ATED钻头的性能可以通过使用开顶式芯筒和低功率窄切口取芯头来提高。可以对ATED型钻机进行改装,使其配备低功率取芯头的敞口式取芯钻机,并包括使用两个泵进行钻井液循环的新方案。小型计量泵在钻头顶部上方释放纯乙醇,第二个泵使井缝上方的井眼流体​​(乙醇水溶液(EWS))循环。使用窄切角取芯头可以降低功率要求,并可以设计一种轻型钻井系统,其中包括用于浅中深度钻井的EM和TE钻头。

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