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Thermal tips for ice hot-point drilling: Experiments and preliminary thermal modeling

机译:冰热点钻孔的热技巧:实验和初步热建模

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摘要

Electrically heated hot points are widely used for drilling in glaciers and ice sheets. To study the effect of input power, axial load, ice temperature, shape, and material of the thermal tip on the hot-point rate of penetration (ROP), a 0.8-m-long drill with 18 changeable thermal tips was designed. The ROP increased with input power for all the thermal tips. Seven tip shapes (cylinder, cosine, ogive, sphere, catenary, parabola, and cone) were tested at the same power level, axial load, and ice temperature, and they exhibited the same ice contact area. The 60 degrees cone-shaped tip demonstrated the highest ROP. The horizontal ring and longitude grooves on the surface of the thermal tips did not improve the drilling performance. The ROP decreased linearly with decreasing ice temperature. Increases in the axial load resulted in increase in the ROP only within the limited range ( 20 N or 8.2 kPa). The ROP of the thermal tip made of copper was more than twice that of the aluminum thermal tip of the same shape. All tested tips were also modeled for temperature distribution inside the thermal tips, and the temperature and heat flux distribution along the outside operating surface of the tips.
机译:电加热的热点被广泛用于在冰川和冰盖上钻孔。为了研究输入功率,轴向载荷,冰温,形状和热尖端材料对热点渗透率(ROP)的影响,设计了一个具有18个可变热尖端的0.8米长的钻头。所有热敏尖端的ROP随着输入功率的增加而增加。在相同的功率水平,轴向载荷和冰温下测试了七个尖端形状(圆柱,余弦形,椭圆形,球形,悬链形,抛物线形和圆锥形),并且它们具有相同的冰接触面积。 60度圆锥形尖端的ROP最高。热敏头表面上的水平环和经度槽不能改善钻孔性能。随着冰温的降低,ROP呈线性下降。轴向载荷的增加仅在限定范围内(<20 N或<8.2 kPa)导致ROP增大。由铜制成的热尖端的ROP是相同形状的铝热尖端的ROP的两倍以上。还对所有测试的烙铁头建模,以模拟热烙铁头内部的温度分布以及沿烙铁头外部操作表面的温度和热通量分布。

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