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Resonant Column Test for Unsaturated Soils With Suction-Saturation Control

机译:吸饱和控制下的非饱和土共振柱试验

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Comprehensive characterization of the small strain shear modulus G_(max) of an unsaturated soil specimen during hydraulic hysteresis requires precise control of the stress state, matric suction, degree of saturation, as well as knowledge of the void ratio. This paper describes the details and typical results from a test method which incorporates the axis translation technique for suction control, a flow pump for degree of saturation control, and a vertically oriented proximeter to infer changes in void ratio into a fixed-free resonant column setup. A unique aspect of this test method is the operation of the flow pump to reach equilibrium points on the hysteretic soil-water retention curve (SWRC) for measurement of G_(max) The flow pump, which controls water flow to or from the soil specimen through a high air-entry ceramic disk, is guided using a feedback loop involving the matric suction measured at the boundary of the specimen. Values of G_(max) were measured at different equilibrium points on the primary drainage path of the SWRC up to the point of water occlusion, then along a scanning imbibition path of the SWRC. The results indicate a greater shear modulus during imbibition, consistent with trends and magnitudes noted in the technical literature.
机译:要对水力滞后过程中非饱和土样品的小应变剪切模量G_(max)进行全面表征,就需要精确控制应力状态,基质吸力,饱和度以及了解空隙率。本文介绍了一种测试方法的细节和典型结果,该方法结合了用于吸力控制的轴平移技术,用于饱和度控制的流量泵和垂直定向的近程测量仪,以将空隙比的变化推断为无固定共振柱的设置。该测试方法的一个独特方面是流量泵的操作,使其达到滞后土壤水分保持曲线(SWRC)上的平衡点,以测量G_(max)流量泵,该流量泵控制进出土壤样本的水流量通过一个高进气量的陶瓷盘,通过一个反馈回路引导,该回路涉及在样品边界处测得的基质吸力。 G_(max)的值是在SWRC的主要排水路径上的不同平衡点测量的,直到水吸留点,然后沿着SWRC的扫描吸水路径测量。结果表明,在吸水过程中剪切模量更大,与技术文献中指出的趋势和幅度一致。

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