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THE IMPACT EFFICIENCY OBTAINED FROM STATIC LOAD TEST PERFORMED ON THE SPT SAMPLER

机译:从SPT采样器上进行的静态负载测试获得的影响效率

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References(13) The aim of this paper is to show how to obtain the impact efficiency from a static load test performed on the standard penetration test (SPT) sampler. In a dynamic test, the maximum resisting force developed during the hammer impact depends on the displacement (static component), velocity (damping component) and acceleration (inertial component). At the instant corresponding to the dynamic test end, experimental data show that the elastic potential energy is negligible. As a consequence, the work done is almost equal to the potential energy stored in the system. Similarly, in a static load test performed on the sampler right after the dynamic test, the elastic potential energy is also negligible. As a consequence, the work done is almost equal to the potential energy stored in the system. Thus, in both tests, the maximum penetration of sampler into the soil is permanent. Additionally, it was verified that the potential energy stored in dynamic test is almost equal to the potential energy stored in static test, for the same value of sampler penetration. Thus, the efficiency can be obtained dividing the system potential energy by the SPT nominal potential energy (474 J).
机译:参考文献(13)本文的目的是展示如何从在标准穿透测试(SPT)采样器上进行的静态载荷测试中获得冲击效率。在动态测试中,锤击过程中产生的最大抵抗力取决于位移(静态分量),速度(阻尼分量)和加速度(惯性分量)。在动态测试结束的瞬间,实验数据表明弹性势能可以忽略不计。结果,完成的功几乎等于系统中存储的势能。类似地,在动态测试之后立即在采样器上执行的静态负载测试中,弹性势能也可以忽略不计。结果,完成的功几乎等于系统中存储的势能。因此,在这两个测试中,采样器对土壤的最大渗透是永久的。此外,对于相同的采样器穿透值,已验证动态测试中存储的势能几乎等于静态测试中存储的势能。因此,可以获得效率,将系统势能除以SPT标称势能(474 J)。

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