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Experimental investigation of water freezing and estimating refreezing time in ice boreholes

机译:冰孔中水冻结和重新冻结时间估算的实验研究

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Borehole closure owing to the refreezing of meltwater poses a serious limitation in ice thermal drilling, and estimates of the refreezing rate are essential for determining safe drilling rates. In this paper, we describe the results of water cooling and freezing experiments in cylindrical ice holes with a diameter of 200 mm at a setup temperature within the range of -20 to - 50 degrees C. These experiments represent a new means of estimating cooling/refreezing rates using two mutually perpendicular diametric sets of thermoresistors installed inside the holed ice sample. In a colder environment, water cooled/froze faster than in the warmer setup: the cooling rates for a hole diameter of 200 mm were 33.3 to 38.5 degrees C h(-1) at - 50 degrees C and 8.5 to 9.5 degrees C h(-1) at - 20 degrees C, while the average freezing rates were 32.3 to 35.1 mm h(-1) at - 50 degrees C and 14.9 to 20.9 mm h(-1) at - 20 degrees C. Data from the refreezing rates are applied for practical ice drilling purposes, and a method for predicting safe hot-point drilling performance in cold ice is suggested.
机译:由于融化水的重新冻结而导致的井眼封闭严重限制了冰热钻探,因此,重新冻结率的估算对于确定安全钻探率至关重要。在本文中,我们描述了在-20至-50摄氏度范围内的设定温度下,在直径为200 mm的圆柱形冰孔中进行水冷却和冷冻实验的结果。这些实验代表了一种估算冷却/使用安装在带孔冰样品中的两个相互垂直直径的热敏电阻重新设定冷冻速率。在较冷的环境中,水的冷却/结冰速度比在较暖的环境中快:200 mm孔径的冷却速率在-50摄氏度和8.5至9.5摄氏度(h)下为33.3至38.5摄氏度(-1)。 -1)在-20摄氏度下,而平均冷冻速度在-50摄氏度下为32.3至35.1 mm h(-1),在-20摄氏度下为14.9至20.9 mm h(-1)。应用于实际的冰钻目的,并提出了一种预测冷冰中安全热点钻探性能的方法。

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