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Analysis on effective stress formula and consolidation of gassy muddy clay

Analysis on effective stress formula and consolidation of gassy muddy clay
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摘要 In order to found an applicable equation of consolidation for gassy muddy clay, an effective stress formula of gas-charged nearly-saturated soils was introduced. And then, a consolidation equation was derived. Subsequently, supposing soils were under tangential loading, the expressions of pore water pressure were presented. The analytic solution of pore water pressure was attempted to be validated by the measured values in a real embankment. The parameters in the expressions of pore water pressure were gotten by the method of trial. The result shows that the consolidation model is rational and the analytic solution of pore water pressure is correct. The following conclusions can be made: 1) the influence of bubbles on the compressibility of pore fluid should be considered; 2) the effective stress would be influenced by bubbles, and the consolidation would depend on the compressibility of soil skeleton: the softer the soils are, the more distinct the influence of bubbles is; for normal clay, the influence of bubbles on the effective stress may be commonly neglected. In order to found an applicable equation of consolidation for gassy muddy clay, an effective stress formula of gas-charged nearly-saturated soils was introduced. And then, a consolidation equation was derived. Subsequently, supposing soils were under tangential loading, the expressions of pore water pressure were presented. The analytic solution of pore water pressure was attempted to be validated by the measured values in a real embankment. The parameters in the expressions of pore water pressure were gotten by the method of trial. The result shows that the consolidation model is rational and the analytic solution of pore water pressure is correct. The following conclusions can be made: 1) the influence of bubbles on the compressibility of pore fluid should be considered; 2) the effective stress would be influenced by bubbles, and the consolidation would depend on the compressibility of soil skeleton: the softer the soils are, the more distinct the influence of bubbles is; for normal clay, the influence of bubbles on the effective stress may be commonly neglected.
出处 《Journal of Central South University》 SCIE EI CAS 2014年第4期1594-1599,共6页 中南大学学报(英文版)
基金 Projects(51278462,51378469)supported by the National Natural Science Foundation of China Project(2011B81005)supported by Ningbo Science and Technology Innovation Team,China Project(2013A610202)supported by Ningbo Natural Science Foundation of China
关键词 muddy clay gas bubble consolidation effective stress unsaturated soil 应力公式 瓦斯泥 合并 孔隙水压力 淤泥质粘土 可压缩性 有效应力 方程推导
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