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- W2388153142 abstract "A typical configuration of capping systems for radioactive waste disposal facilities is coarser material layer underlying a finer material layer.Series of infiltration tests under different infiltration rate(5,10,15,20and 25mm/d)were conducted in a box-shape capping systems to simulate the rainfalls with different intensity.The breakthrough quantity and lateral drainage in the fine-coarse interface were quantitative analyzed to investigate the impact of infiltration strength on capillary barrier formed by fine and coarse quartz sand layers.Matric potential showed that the moisture in the coarse-fine interface accumulated and no transverse flow found before the matrix suction reach to the influent suction of coarse sand layer,after then,breakthrough flow occurred and matric potential of coarse-fine interface decreased quickly.With increasing the infiltration rate,the increasing degree of matric potential in coarse-fine interface during infiltration process getting more and more obvious,as well as the decreasing degree of matric potential after infiltration process.In comparison,the variation of matric potential in finer layer was relatively small.Lateral drainage detection showed that the breakthrough flow would not happened when infiltration rate less than 5mm/d.The water penetrated through the coarse-fine interface was increased with increasing the infiltration strength,and lateral drainage decreased,wnehn infiltration rate increased to 25mm/d,the lateral drainage decreased to 39.7%." @default.
- W2388153142 created "2016-06-24" @default.
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- W2388153142 date "2014-01-01" @default.
- W2388153142 modified "2023-09-26" @default.
- W2388153142 title "An experimental investigation on the impact of infiltration rate on capillary brriers in covers of radioactive wastes disposal facilities" @default.
- W2388153142 hasPublicationYear "2014" @default.
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