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Standard penetration testing in a virtual calibration chamber

机译:在虚拟校准室中进行标准渗透测试

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The virtual calibration chamber technique, based on the discrete element method, is here applied to study the standard penetration test (SPT). A macro-element approach is used to represent a rod driven with an impact like those applied to perform SPT. The rod is driven into a chamber filled with a scaled discrete analogue of a quartz sand. The contact properties of the discrete analogue are calibrated simulating two low-pressure triaxial tests. The rod is driven changing input energy and controlling initial density and confinement stress. Energy-based blowcount normalization is shown to be effective. Results obtained are in good quantitative agreement with well-accepted experimentally-based relations between blowcount, density and overburden. It is also shown that the tip resistance measured under impact dynamic penetration conditions is close to that under constant velocity conditions, hence supporting recent proposals to relate CPT and SPT results.
机译:在此,基于离散元素方法的虚拟校准室技术将用于研究标准穿透测试(SPT)。宏元素方法用于表示受冲击驱动的杆,就像执行SPT所应用的那样。杆被驱动到一个装有比例缩放的石英砂类似物的腔室内。模拟两个低压三轴测试对离散量类似物的接触特性进行了校准。驱动杆来改变输入能量并控制初始密度和限制应力。基于能量的打击计数标准化被证明是有效的。所获得的结果与定量分析,密度和覆盖层之间基于实验的良好关系在定量上吻合良好。还表明,在冲击动态穿透条件下测得的尖端阻力接近于等速条件下的尖端阻力,因此支持了有关CPT和SPT结果的最新建议。

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