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Effects of drying on the low-frequency electrical properties of Tournemire argillites

机译:干燥对Tournemire泥石的低频电性能的影响

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Nearly water-saturated argillite samples (initial water content near 3.4 wt%) were cored from an undisturbed area of an underground facility of the French Institute for Radioprotection and Nuclear Safety (IRSN), located at Tournemire (Aveyron, France). These samples were subjected to the following desiccation path: (a) A desaturation phase during which the samples were dried at ambient temperature conditions, relative humidity equal to 43% in average and (b) a heating phase during which the same samples were heated at four temperature levels from 70 degrees C up to 105 degrees C. During both phases, the low-frequency complex resistivity (0.18Hz-12 kHz) was recorded by a four-electrode device. The amplitude of the complex resistivity was extremely sensitive to water content change. At the end of the isotherm desaturation phase, it was multiplied by a factor of 3 to 5. During the heating phase, the resistivity increased by more than two orders of magnitude compared to the initial state. The percentage of Frequency Effect shows a low sensitivity to water content changes during the desaturation stage while it increased by two orders of magnitude during the heating phase. This result confirms that low-frequency spectral signature is extremely sensitive to textural changes (i.e., thermal-induced microcracking in this case) that occurred during heating. Moreover, the complex resistivity of the samples shows a strong anisotropy (a ratio of 10 between both amplitudes measured in the perpendicular directions). The classical Cole-Cole model cannot be used to fit the experimental data obtained in the heating phase. A generalized formulation of this model is required and was successfully applied to represent the complex resistivity data.
机译:来自位于法国图尔尼米尔(Aveyron)的法国放射防护与核安全研究所(IRSN)地下设施的未扰动区域取了接近水饱和的硅藻土样品(初始含水量接近3.4 wt%)。这些样品经过以下干燥路径:(a)脱饱和阶段,在此阶段样品在室温条件下干燥,相对湿度平均等于43%;(b)加热阶段,在同一温度下样品被加热从70摄氏度到105摄氏度这四个温度水平。在两个阶段中,通过四电极设备记录了低频复电阻率(0.18Hz-12 kHz)。复电阻率的幅度对含水量变化极为敏感。在等温线去饱和阶段结束时,将其乘以3到5。在加热阶段,电阻率与初始状态相比增加了两个数量级以上。频率效应的百分比显示出在去饱和阶段对水含量变化的敏感性较低,而在加热阶段则增加了两个数量级。该结果证实了低频频谱特征对加热期间发生的纹理变化(即,在这种情况下,由热引起的微裂纹)极为敏感。此外,样品的复电阻率显示出很强的各向异性(在垂直方向上测得的两个振幅之间的比率为10)。经典的Cole-Cole模型不能用于拟合在加热阶段获得的实验数据。需要该模型的通用公式,并已成功地用于表示复电阻率数据。

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