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MEASUREMENTS OF SOIL DEFORMATION BY MEANS OF CONE PENETROMETER

机译:用锥形渗透仪测量土壤变形。

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References(44) Measurement of the settlement of a cone submitted to incremental loading allows the determination of a modulus correlated to those obtained using laboratory tests or derived from other in situ tests. This test can be carried out with standard static penetrometer equipment. After stopping the penetration of a static penetrometer cone at a selected depth, an incremental loading test is carried out until the failure of the ground under the cone is observed. Stress strain relationships can be drawn from cone resistance and sleeve friction. In this manner, a modulus and a friction angle can be obtained. Thus the classical CPT log is enriched offering new possibilities. In this paper the development of the first prototype and measuring devices and the proposed testing procedure are presented. A comparison of laboratory and field tests and geotechnical centrifuge models shows the validity of the testing procedure and the chosen interpretation method. The results of site investigations carried out on French national experimental sites are also discussed and compared with high quality borehole expansion test and field measurement of shear wave velocity. These investigations have been carried out using this new testing method in combination with a semi-heavy static Piezocone penetrometer in order to check the potential use for geotechnical design. An attempt is made in this paper to validate the interpretation method of the results, which can be used for routine geotechnical engineering.
机译:参考文献(44)通过测量承受增量载荷的圆锥体的沉降,可以确定与使用实验室测试获得或从其他原位测试获得的模量相关的模量。该测试可以使用标准的静态渗透仪设备进行。在选定的深度处停止静态渗透计圆锥体的渗透之后,进行增量载荷测试,直到观察到圆锥体下方的地面失效为止。应力应变关系可以从圆锥阻力和套筒摩擦中得出。以这种方式,可以获得模量和摩擦角。因此,经典的CPT日志得以丰富,提供了新的可能性。本文介绍了第一个原型和测量设备的开发以及建议的测试程序。通过对实验室和现场测试以及岩土离心机模型的比较,可以证明测试程序和所选解释方法的有效性。还讨论了在法国国家实验现场进行的现场调查结果,并将其与高质量的钻孔扩展测试和剪切波速度的现场测量进行了比较。这些研究是使用这种新的测试方法与半重静态压电压电渗透仪相结合进行的,以检查岩土工程设计的潜在用途。本文尝试验证结果的解释方法,该方法可用于常规岩土工程。

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