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Influences of salt solution concentration and vertical stress during saturation on the volume change behavior of compacted GMZ01 bentonite

机译:饱和期间盐溶液浓度和垂直应力对压实GMZ01膨润土体积变化行为的影响

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Investigation of the effects of salt solution concentration and vertical stress during saturation on the volume change behavior of compacted bentonite is of great importance for the assessment of the behavior of engineering barrier in deep geological repository for disposal of high-level radioactive waste. In this study, oedometer tests were conducted on densely compacted GMZ01 bentonite specimens with an initial dry density of 1.70 Mg/m(3), which experienced swelling under different vertical stresses with infiltration of de-ionized water or NaCl solutions at different concentrations. The effects of salt solution concentration and vertical stress during saturation on the volume change of GMZ01 bentonite specimens were investigated in terms of swelling strain, elastic compressibility parameter, plastic compressibility parameter and yield stress. Results show that as the concentrations of salt solutions increase, the swelling strain, the elastic compressibility parameter and the plastic compressibility parameter decrease, while the yield stress increases. However, the vertical stress during saturation can only affect the swelling strain and the yield stress. Based on the test results, empirical equations with consideration of salt solution concentration and vertical stress during saturation effects were proposed allowing the prediction of swelling strain, plastic compressibility parameter and yield stress. The calculated results are in good agreement with the experimental ones. (C) 2016 Elsevier B.V. All rights reserved.
机译:研究盐溶液浓度和饱和时的垂直应力对压实膨润土体积变化行为的影响,对于评估深部地质处置高放废物的工程屏障的行为具有重要意义。在这项研究中,在初始干密度为1.70 Mg / m(3)的致密压实GMZ01膨润土样品上进行了里程表测试,该样品在不同的垂直应力下经历了去离子水或NaCl溶液在不同浓度下的渗透而发生溶胀。从溶胀应变,弹性压缩参数,塑性压缩参数和屈服应力等方面研究了盐溶液浓度和饱和时的垂直应力对GMZ01膨润土试样体积变化的影响。结果表明,随着盐溶液浓度的增加,溶胀应变,弹性压缩参数和塑性压缩参数减小,而屈服应力增加。但是,饱和时的垂直应力仅会影响膨胀应变和屈服应力。根据测试结果,提出了考虑盐溶液浓度和饱和效应时的垂直应力的经验方程,从而可以预测膨胀应变,塑性压缩参数和屈服应力。计算结果与实验结果吻合良好。 (C)2016 Elsevier B.V.保留所有权利。

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