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Thermal conductivity and thermal diffusivity of cores from a 26 meter deep borehole drilled in Livingston Island, Maritime Antarctic

机译:南极海洋利文斯顿岛钻探的26米深钻孔的岩心导热系数和热扩散系数

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摘要

During the month of January of 2008 a borehole (Permamodel-Gulbenkian 1 — PG1) 26 m deep was drilled on the top of Mount Reina Sofia (275 m a.s.l.) near the Spanish Antarctic Station of Livingston Island, SouthShetland Islands. Cores from1.5 mto about 26mdeepwere collected formeasuring several physical properties. The objective of the present work is to report the values of the thermal conductivity and the thermal diffusivity that were measured in the cores fromthe borehole and the heat production thatwas estimated for the geological formations intercepted by it. Seven coreswere selected to measure the thermal conductivity and the thermal diffusivity. The measured values for the thermal conductivity vary from2.6W/mK to 3.3 W/mKwhile the measuredvalues for the thermal diffusivity vary from 1.1×10−6 m2/s to 1.6×10−6 m2/s. Both thermal conductivity and thermal diffusivity, on average, show a slight increase with depth. Average heat production was also estimatedfor two portions of the borehole: one from2 to 12mand the other from12 to 25 m. A gamma-ray spectrometer was used to estimate the concentrations of uranium, thorium, and potassium of the cores, from which the heatproduction per unit volume was calculated. The estimated heat production for the first half of the borehole is 2.218 μW/m3 while for the second half it is 2.173 μW/m3; these heat production values are compatiblewith acidicrock types. Porosity and density were also estimated for the same cores.
机译:在2008年1月,在南设得兰群岛利文斯顿岛西班牙南极站附近的雷纳索非亚山(275 m a.s.l.)顶部钻了一个26 m深的钻孔(Permamodel-Gulbenkian 1-PG1)。收集了1.5 m至约26 mdeep的岩心,以测量几种物理性质。本工作的目的是报告在井眼中测得的岩心中的热导率和热扩散率的值,并估算由井眼拦截的地质构造所产生的热量。选择七个芯来测量热导率和热扩散率。热导率的测量值从2.6W / mK到3.3 W / mK,而热扩散率的测量值从1.1×10-6 m2 / s到1.6×10-6 m2 / s。平均而言,导热率和热扩散率均随深度而略有增加。还估计了钻孔的两个部分的平均热量产生:一个从2到12,另一个从12到25 m。使用伽马射线能谱仪估算核芯中铀,th和钾的浓度,由此计算出每单位体积的热量。估计钻孔上半部分的产热量为2.218μW/ m3,而下半部分为2.173μW/ m3;这些产热值与酸性岩石类型兼容。还估计了相同岩心的孔隙率和密度。

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