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Resonant Column Behavior of Unsaturated Near-Surface Sands

机译:非饱和近地表砂的共振柱行为

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It is well established that the small-strain shear modulus is a function of the effective confining pressure. However, soil fabric is the principal factor that dictates soil behavior under low-to-zero confinement and is not accounted for in classical calculations. In order to better understand the behavior of unsaturated near-surface sands, a series of soil-water characteristic curve (SWCC) and resonant column tests was conducted to characterize the potential saturation-stiffness and confinement-stiffness relationships of a cohesionless sand at confining pressures less than 100 kPa. The results of SWCC testing indicated that suction does not significantly influence the overall stiffness of the specimen. Resonant column testing showed that irrespective of initial density state, the stiffness characteristics of a soil-controlled matrix under 0-kPa confinement can be approximated by a mean state (resonant frequency of 35.4 Hz; shear wave velocity of 130.3 m/s; shear modulus of 31.8 MPa) for most geotechnical problems. As the confining pressure is increased for samples below 70% saturation, there is an abrupt stiffening of the sample, increasing stiffness characteristics by as much as 223%, as the specimen transforms from a matrix-controlled sample to a confinement-controlled sample. This transformation is not observed for saturations in excess of 70%. For this material, the transition occurred at 22 kPa, which coincides approximately with the 1-m overburden definition of near-surface soils.
机译:众所周知,小应变剪切模量是有效围压的函数。但是,土壤结构是决定低至零约束条件下土壤行为的主要因素,并且在经典计算中并未考虑。为了更好地理解非饱和近地砂的行为,进行了一系列土水特征曲线(SWCC)和共振柱试验,以表征无粘性砂在约束压力下的潜在饱和-刚度和约束-刚度关系。小于100 kPa。 SWCC测试的结果表明,吸力不会显着影响样品的整体刚度。共振柱测试表明,不管初始密度状态如何,在0 kPa限制下,土壤控制基质的刚度特性都可以通过平均状态(共振频率为35.4 Hz;剪切波速度为130.3 m / s;剪切模量)来近似。对于大多数岩土工程问题,其最大应力为31.8 MPa。当饱和度低于70%的样品的围压增加时,样品突然变硬,随着样品从基质控制的样品转变为限制控制的样品,刚度特性增加了多达223%。对于超过70%的饱和度,未观察到此变换。对于这种材料,转变发生在22 kPa,大约与近表层土壤的1-m覆盖层定义相吻合。

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