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Cone penetration test in sand: A numerical-analytical approach

机译:砂中锥体渗透测试:一种数值分析方法

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Separation of the effects of initial horizontal stress and relative density on cone tip resistance in sandy soils has been a complicated issue for many years. In order to overcome this problem, a numerical modeling of CPT which has been verified by calibration chamber tests, has been used in this paper to achieve a reliable analytical solution. The analytical solution has resulted in two relationships for sleeve friction and cone tip resistance in terms of the initial conditions of sandy soil. Based on the presented solution, the initial horizontal stress and relative density can be determined according to CPT measurements. (C) 2017 Elsevier Ltd. All rights reserved.
机译:多年来,在砂质土壤中分离初始水平应力和相对密度对锥尖阻力的影响一直是一个复杂的问题。为了克服这个问题,本文通过校准室测试验证了CPT的数值模型,以实现可靠的分析解决方案。根据砂土的初始条件,该分析解决方案得出了套筒摩擦力和锥头阻力的两种关系。基于提出的解决方案,可以根据CPT测量确定初始水平应力和相对密度。 (C)2017 Elsevier Ltd.保留所有权利。

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