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Identification of Shear Zones and Their Causal Mechanisms Using a Combination of Cone Penetration Tests and Seismic Data in the Eastern Niger Delta

机译:结合锥形穿透试验和尼日尔东部三角洲地震资料识别剪切带及其成因机制

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In a site investigation of the eastern part of the offshore Niger delta, cone penetration tests (CPTU) showed significant drops in tip resistance, associated with decreases in sleeve friction and induced excess pore pressures at the interface between superficial sediments and the underlying deposits of a mass-transport complex (MTC) called NG1. Such signature characteristics of weakened zones are clearly expressed at three sites where the drop in tip resistance reaches more than 40% over 2-3 m-thick intervals. Correlations between CPTU profiles and both 3D and ultrahigh-resolution 2D seismic data suggest that the weakened zones surround syndepositional the within the frontal part of NG1. Hence, weakening appears associated with the remobilization of thrust faults, inducing localized plastic shear. Relatively recent, deep-seated structural movements affecting NG1 are suspected to have remobilized these thrusts faults. When considering the sole influence of gravity, the fact that shear strength is mobilized within scattered, limited zones along steeply dipping syndepositional faults is not favorable for the further development of a continuous slope-parallel failure surface above NG1.
机译:在尼日尔三角洲近海东部的现场调查中,锥孔渗透试验(CPTU)显示,尖端阻力显着下降,这与套管摩擦力下降以及在浅层沉积物和深层沉积物之间的界面处引起的过大孔隙压力有关。大规模运输复合体(MTC),称为NG1。在三个位置,在2-3 m厚度的间隔内,尖端电阻的下降达到40%以上时,明显表现出弱化区域的这种特征。 CPTU剖面与3D和超高分辨率2D地震数据之间的相关性表明,弱化带围绕NG1正面部分内的同沉积。因此,弱化似乎与逆冲断层的移动有关,引起局部塑性剪切。相对较近的影响NG1的深层结构运动被怀疑已经清除了这些逆冲断层。当考虑到重力的唯一影响时,在陡峭的倾斜沉积断层上分散的,有限的区域内动员了剪切强度的事实,不利于NG1上方连续的平行于斜坡的连续破坏面的进一步发展。

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