EXPERIMENTAL STUDY OF GAS PERMEABILITY OF BENTONITE- SAND MIXTURES AS BUFFER/BACKFILLING MATERIALS
WANG Long1,2,FANG Xiangwei1,SHEN Chunni3,LI Chunhai1,YAO Zhihua1
(1. Chongqing Key Laboratory of Geomechanics and Geoenvironmental Protection,Logistical Engineering University,
Chongqing 401311,China;2. The 75714 Unit of PLA,Hengyang,Hunan 421000,China;3. Department of Architecture and Civil Engineering,Chongqing University of Science and Technology,Chongqing 401331,China)
Abstract:The improved triaxial gas permeable apparatus device was employed to conduct a series of experiments for sample of mixture with different sand ratios,dry densities and water contents in order to study the law of gas permeability of GMZ bentonite-sand mixture buffer/backfill materials. The result shows that within the range of experimental condition,the gas permeability coefficient of bentonite-sand mixture(including pure bentonite) is between 3.9×10−4–2.1×10−2 cm/s. Gas flow of bentonite-sand mixture materials can be expressed by Darcy law,but higher gas pressure gradient has certain influence to figure of gas permeability coefficient,and sand ratio,dry density and water content have effect on gas permeability of mixture respectively. The gas permeability ratio of mixture increases exponentially with the increase of sand ratio,while decreases exponentially with the increase of dry density and water content. The gas permeability coefficient formulas of mixture under different conditions were set up within the range of experimental research,which coincide well with the experimental result. A set of experimental data can provide scientific basis for the construction of HLW(high-level radioactive waste) geological disposal in China.
汪 龙1,2,方祥位1,申春妮3,李春海1,姚志华1. 膨润土–砂混合型缓冲/回填材料渗气规律试验研究[J]. 岩石力学与工程学报, 2015, 34(s1): 3381-3388.
WANG Long1,2,FANG Xiangwei1,SHEN Chunni3,LI Chunhai1,YAO Zhihua1. EXPERIMENTAL STUDY OF GAS PERMEABILITY OF BENTONITE- SAND MIXTURES AS BUFFER/BACKFILLING MATERIALS. , 2015, 34(s1): 3381-3388.
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