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DYNAMIC CONE PENETRATION RESISTANCE OF SOILS-THEORY AND EVALUATION

机译:土体的动力锥渗透阻力-理论与评价

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摘要

A theory based on the pore collapse concept applied to cylindrical cavity expansion is developed for evaluating Dynamic Cone Penetration (DCP) resistance and predicting Dynamic Cone Penetration Index (DCPI) in c-φ soils. A closed form solution for the penetration resistance and DCPI is developed. The present analyses assume the soil matrix to flow according to a rigid-plastic rule in the core region surrounding the cone. Thus, a free boundary defining the plastic domain develops and constitutes a part of the solution. The soil beyond that region is in its linear elastic state and is considered to have negligible contribution, since the mechanism governing the penetration is predominantly dependent on volumetric change due to pore compressibility. An energy balance criterion is utilized to calculate the DCPI, which is compared with experimental values observing good agreement. The effect of angle of internal friction φ, on penetration resistance/DCPI is much more significant than that of cohesion, c, especially at low initial porosity levels.
机译:建立了基于孔隙塌陷概念的圆柱孔扩张理论,用于评估动力锥穿透力(DCP)的阻力并预测c-φ土壤中的动力锥穿透指数(DCPI)。开发了一种用于抗穿透性和DCPI的封闭式解决方案。目前的分析假设土壤基质按照刚塑性规则在圆锥周围的核心区域中流动。因此,定义塑性域的自由边界发展并构成了解决方案的一部分。该区域以外的土壤处于线性弹性状态,并被认为贡献不大,因为控制渗透的机制主要取决于孔隙可压缩性引起的体积变化。利用能量平衡标准来计算DCPI,并将其与观察到良好一致性的实验值进行比较。内摩擦角φ对渗透阻力/ DCPI的影响比内聚力c的影响大得多,尤其是在较低的初始孔隙度水平下。

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