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Correlating Standard Penetration Test and Dynamic Probe Super Heavy penetration resistance values in sandy soils

机译:砂土中标准渗透试验和动态探头超强抗穿透性值的相关性

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This paper presents a statistical method used to develop an empirical equivalence between the Standard Penetration Test (SPT) and the Dynamic Probe Super Heavy (DPSH) in sandy material. Penetration resistance values from the two tests are often taken as equivalent for design purposes, as the same drive energy is used in both. SPT and DPSH resistance values from different geological depositional and weathering environments were examined. The data came from the following areas across southern Africa: Matola in Mozambique, Gope in Botswana, Umdloti and Cape Town in South Africa, and Illha de Luanda in Angola. It was apparent that energy losses were greater in the DPSH test than in the SPT, leading to higher resistance values in the former. The SPT is carried out within a borehole, whereas the DPSH is continuously driven into the soil. The dynamic force applied to the DPSH rods causes soil to fill the small air annulus around the rods, exerting a frictional resistance. The different geological settings of the test sites revealed that, although different factors cause the friction, the equivalence varied in a similar manner. Hence a single correlation formula is suggested to determine equivalent SPT values from raw DPSH resistance values.
机译:本文提出了一种统计方法,用于开发沙质材料中标准渗透率测试(SPT)与超重动态探针(DPSH)之间的经验等效性。出于设计目的,两次测试的渗透阻力值通常被认为是等效的,因为两者均使用相同的驱动能量。检查了来自不同地质沉积和风化环境的SPT和DPSH抗性值。数据来自整个非洲南部的以下地区:莫桑比克的Matola,博茨瓦纳的Gope,南非的Umdloti和开普敦以及安哥拉的Illha de Luanda。显然,DPSH测试中的能量损失大于SPT中的能量损失,从而导致前者的电阻值更高。 SPT在钻孔内进行,而DPSH则连续地被推入土壤中。施加在DPSH杆上的动力使土壤充满杆周围的小空气环,从而产生摩擦阻力。测试地点的不同地质环境表明,尽管不同的因素导致了摩擦,但当量以相似的方式变化。因此,建议使用单个相关公式从原始DPSH电阻值确定等效的SPT值。

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