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Estimating soil-water characteristic curve from soil-freezing characteristic curve for mine waste tailings using time domain reflectometry

机译:时域反射测量估算矿井废尾土壤冻结特性曲线的土壤 - 水特征曲线

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摘要

The unsaturated properties of a soil are required to predict the rate of dewatering and magnitude of strength gain of a mine waste tailings deposit during desiccation dewatering. This prediction requires the soil-water characteristic curve (SWCC), which is time-consuming and challenging to attain and may take anywhere from weeks to months to complete a single test. As a result, alternative methods are needed to estimate the SWCC. Past research has indicated that the soil-freezing characteristic curve (SFCC) can be used to estimate the SWCC in some soils. An experimental method and apparatus were developed to measure the SFCC to estimate the SWCC for different mine waste tailings, including copper tailings, gold tailings, and oil sands centrifuge cake. The experimental method involved using a resistance temperature detector to measure the temperature and time domain reflectometry to determine the unfrozen water content of the soil. The results showed that the SFCC could be used to estimate the SWCC for tailings from metal mines (gold tailings and copper tailings) with a high portion of sand-sized particles and a small amount of clay-sized particles, but was not able to estimate the SWCC for oil sands tailings.
机译:需要土壤的不饱和性能来预测在干燥脱水期间矿井废尾矿沉积矿床的脱水和强度增益的速度。这种预测需要土壤 - 水特征曲线(SWCC),这是耗时和挑战的达到,可能需要几周到几个月才能完成一次测试。结果,需要替代方法来估计SWCC。过去的研究表明,冷冻性特性曲线(SFCC)可用于估计一些土壤中的SWCC。开发了一种实验方法和设备来测量SFCC,以估计不同矿井废物尾矿的SWCC,包括铜尾矿,金尾矿和油砂离心饼。使用电阻温度检测器涉及的实验方法测量温度和时域反射测定法以确定土壤的未冷却水含量。结果表明,SFCC可用于估算来自金属矿山(金尾矿和铜尾矿)的SWCC,其中砂粒粒度高,少量的粘土粒子颗粒,但不能估计油砂尾矿的SWCC。

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