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Hydro-mechanical analysis of GMZ bentonite-sand mixtures in the water infiltration process as the buffer/backfill mixture in an engineered nuclear barrier

机译:GMZ膨润土-砂混合物在水渗透过程中作为工程核屏障中的缓冲/回填混合物的流体力学分析

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A series of unsaturated tests on the GMZ bentonite-sand mixture at different dry densities and sand ratios are analyzed. This mixture is proposed as buffer/backfilling material in the Chinese concept for radioactive waste disposal. The water retention properties were studied under both confined and unconfined conditions; the results show that the water retention capacity is independent of the confined conditions and dry density if the suction is greater that about 4-5 MPa, and by contrast, at low suctions (<4-5 MPa) the confined conditions and dry density influence the water retention capacity. However, the water retention capacity is always influenced by the presence of sand. The unsaturated hydraulic conductivity was determined in the infiltration test by the special apparatus designed by the authors. The value of unsaturated hydraulic conductivity did not change significantly with the dry density changing from 1.50 to 1.90 Mg/m~3 or sand ratio increasing from 30% to 50%, always lower than 2.0 ×10~(-12) m/s. Furthermore, the swelling pressure at different position of specimen was monitored during the infiltration process, and the dry density distributions have also been determined at the end of the tests. Therefore, this method can be used for engineering purposes to predict the unsaturated hydraulic parameters at an early stage of a design to get an idea of the required design and hence, cost.
机译:分析了不同干密度和不同砂比的GMZ膨润土-砂混合物的一系列不饱和试验。在中国概念中,这种混合物被提议用作缓冲/回填材料,用于放射性废物处置。在密闭和非密闭条件下都研究了保水性能。结果表明,当吸力大于4-5 MPa时,保水能力不受密闭条件和干密度的影响;相反,在低吸水率(<4-5 MPa)下,密闭条件和干密度的影响保水能力。但是,保水能力始终受沙子的存在影响。在渗透试验中,作者设计的专用设备确定了不饱和水力传导率。干密度从1.50 Mg / m〜3改变为1.90 Mg / m〜3,砂比从30%增加到50%时,非饱和导水率值变化不大,始终低于2.0×10〜(-12)m / s。此外,在渗透过程中监测了样品在不同位置的溶胀压力,并且在测试结束时还确定了干密度分布。因此,该方法可用于工程设计目的,以在设计的早期阶段预测不饱和水力参数,以了解所需的设计,进而节省成本。

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