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Design parameters of Portuguese granitic residual soils obtained from DMT tests

机译:通过DMT试验获得的葡萄牙花岗岩残留土的设计参数

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Cemented soils are often seen as non-textbook materials, since they don't fit into the usual behavior of transported soils in the light of classical Soil Mechanics theories. This fact creates several problems on the interpretation of in-situ test results, when the classical approaches are used, limiting the application of common in-situ tests. Departing from a long experience in characterizing Portuguese granitic soils with Marchetti's Dilatometer (DMT) a large calibration box (CemSoil Box) was constructed to work with artificially cemented silty sands, aiming the evaluation of static penetration influence in the loss of cementation strength, and the overall effects on the stiffness response, giving rise to adequate correlations for deriving design parameters. The experience was based in the development of artificially samples tested in triaxial cell and in the CemSoil Box, where blades could be pre-installed and pushed in. Water level, suction and seismic velocities were monitored during the experience. The final results allowed for the establishment of specific correlations to derive strength (cohesion intercept and angles of shearing resistance) and stiffness (deformability and small strain shear modulus) parameters, as well as a specific methodology for controlling suction influence on the respective results..
机译:胶结土壤通常被视为非教科书材料,因为根据经典的土壤力学理论,它们不适合运输土壤的通常行为。当使用经典方法时,这一事实在解释原位测试结果时产生了一些问题,从而限制了普通原位测试的应用。与使用Marchetti的膨胀计(DMT)表征葡萄牙花岗岩土壤的长期经验不同,构建了一个大型校准箱(CemSoil Box),可与人工胶结的粉质砂一起使用,旨在评估静态渗透对胶结强度损失的影响,以及对刚度响应的整体影响,为得出设计参数带来了足够的相关性。该经验的基础是在三轴隔室和CemSoil箱中开发的人造样品的开发过程中,可以预先安装并推入叶片。在此过程中,可以监控水位,吸力和地震速度。最终结果允许建立特定的相关关系,以得出强度(内聚力截距和抗剪角度)和刚度(可变形性和小应变剪切模量)参数,以及控制吸力对各个结果的影响的特定方法。

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