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Impact of Grain Size Distribution Curve on the Small Strain Shear Modulus of Unsaturated Clean Sand

机译:晶粒尺寸分布曲线对不饱和清洁砂小应变剪切模量的影响

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Previous studies on saturated and dry clean sand indicated that for a constant void ratio, the small strain shear modulus, G_(max), is strongly affected by grain size distribution of the material. The effect of grain size distribution was mostly examined through differentiating two related terms of grain size distribution curve - that is - mean grain size, d_(50); and coefficient of uniformity, C_u. In this study, the G_(max) results of bender element tests on specimens of three different grain-sized sands were used to evaluate the role of grain size distribution on the behavior of G_(max) for clean sand in an unsaturated state. The tests were performed at matric suctions, ψ, ranging from 0 to 15 kPa, along the drying path of the soil water retention curve, SWRC, under a constant mean net stress of 70 kPa. Results showed an "up-and-down" behavior for the small strain shear modulus during drying, complying with the shape of the suction stress-matric suction curve. Furthermore, based on the experimental measurements, D_(50) increase had an effect of shifting the SWRC to the left, reducing the rate of changes in G_(max), while an increase in C_u widened up the SWRC, decreasing the values of G_(max) upon drying. Results of this study were also compared with values of G_(max) predicted using available approaches for the small strain shear modulus of unsaturated soils, and it was concluded that suction stress is the parameter which is responsible for the behavior of drying G_(max) of unsaturated sands with different grain size distribution curves.
机译:以前关于饱和和干燥清洁砂的研究表明,对于恒定的空隙率,小应变剪切模量,G_(MAX)受到材料的晶粒尺寸分布的强烈影响。通过区分两种相关的粒度分布曲线 - 平均晶粒尺寸,D_(50),主要检查晶粒尺寸分布的效果。和均匀系数,c_u。在这项研究中,使用了三种不同晶粒样标本的BENDER元素试验的G_(MAX)结果来评估晶粒尺寸分布对不饱和状态下清洁砂的G_(MAX)的行为的作用。在恒定平均净应力为70kPa的恒定平均净应力下,在Matric Sunction,Ⅳ,范围为0至15kPa,沿0至15kPa的干燥路径进行。结果表明,在干燥期间,对小菌应变剪切模量的“上下”行为,符合抽吸应力 - 原料抽吸曲线的形状。此外,基于实验测量,D_(50)增加对SWRC转移到左侧的效果,降低了G_(MAX)的变化率,而C_U的增加宽泛为SWRC,则降低G_的值(最大)在干燥时。还将本研究的结果与使用不饱和土的小应变剪切模量的可用方法预测的G_(MAX)的值进行比较,并且得出结论,抽吸应力是负责干燥G_(MAX)的行为的参数不饱和砂与不同的粒度分布曲线。

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