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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:使用锥形渗透试验和东部尼日尔三角洲的地震数据的组合鉴定剪力区及其因果机制

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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:在海上尼日尔三角洲东部的地点调查中,锥形渗透试验(CPTU)显示出尖端电阻下降,与套筒摩擦的降低有关,并且在浅表沉积物和底层沉积物之间诱导过量的孔隙压力叫做NG1的大规模交通络合物(MTC)。在三个地点清楚地表达了弱化区域的这种签名特征,其中尖端电阻下降达到超过2℃以上的间隔超过40%以上。 CPTU简档与3D和超高分辨率2D地震数据之间的相关性表明,弱化区域环绕着NG1的正面部分内的Syndeposital。因此,与推力故障的重新化相关,诱导局部塑料剪切出现弱化。相对近来,怀疑影响NG1的深层结构运动被怀疑重新染色这些推力故障。当考虑到重力的唯一影响时,剪切强度在散射的情况下动员的事实,沿陡峭的浸渍二聚体故障沿陡峭浸渍的Syndoposal断层的进一步发展是不利的,对于NG1上方的连续斜坡平行失效表面的进一步发展是不利的。

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