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The impact of the diameter to height ratio on the compressibility parameters of saturated fine-grained soils

机译:径高比对饱和细粒土压缩性参数的影响

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摘要

Compressibility parameters of fine-grained soils are mainly influenced by soil mineralogy, moisture content and soil diameter to height ratio (D/H). The British and American standards suggested that to obtain accurate engineering properties; it is necessary to use D/H ratio of 4 and 2.5 respectively to eliminate friction between the soil and the structure. In the current study, various D/H ratios were adopted ranging from 0.5 to 11. The D/H ratios effect on some compressibility parameters such as coefficient of consolidation (cv), compression index (cc) and coefficient of volume compressibility (mv) were analysed. Additionally, the impact of the D/H ratio on the acquire cv values were also presented where three methods were used namely: Casagrande, Taylor and Inflection method. The scaling effects based on cv ratio [cv (√t) / cv (log t)] from Oedometer tests using different D/H ratios are also presented. The results showed that Taylor’s method is the most appropriate way to achieve an accurate cv and an increase in pressure leads to a reduction in cc and a gradual decrease in mv. The validation of the experimental results on a finite element software package PLAXIS was completed.
机译:细粒土壤的可压缩性参数主要受土壤矿物学,水分含量和土壤直径与高度之比(D / H)的影响。英国和美国的标准建议要获得准确的工程特性;必须使用D / H比分别为4和2.5来消除土壤与结构之间的摩擦。在当前的研究中,采用的D / H比率范围从0.5到11。D/ H比率对某些压缩率参数产生影响,例如固结系数(cv),压缩指数(cc)和体积压缩率(mv)被分析。此外,还使用了三种方法(卡萨格兰德,泰勒和屈折法),介绍了D / H比对获得的cv值的影响。还介绍了使用不同D / H比的Oedometer测试中基于cv比[cv(√t)/ cv(log t)]的缩放效果。结果表明,泰勒方法是获得准确cv的最合适方法,而压力增加会导致cc减小和mv逐渐减小。在有限元软件包PLAXIS上完成了对实验结果的验证。

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