首页> 外文期刊>Bulletin of the Seismological Society of America >Liquefaction-Induced Damage and CPT Characterization of the Reclamations at CentrePort, Wellington
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Liquefaction-Induced Damage and CPT Characterization of the Reclamations at CentrePort, Wellington

机译:惠灵顿Centreport的填补损伤和CPT表征的损伤和CPT表征

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摘要

The 2016 M-w 7.8 Kaikoura earthquake caused widespread liquefaction and significant ground movements in thick end-dumped gravelly fills and hydraulically placed dredged sandy fills at CentrePort, Wellington. Settlement of 200-300 mm occurred throughout the reclamation, and settlement as large as 400-600 mm occurred near the reclamation edges where lateral movements on the order of 0.5-1.5 m occurred, which in turn damaged wharves and structures. Ground motions and damages at the port produced by the 2013 M-w 6.6 Cook Strait and the 2013 M-w 6.6 Lake Grassmere earthquakes are compared with those caused by the 2016 M-w 7.8 Kaikoura earthquake. The documentation of liquefaction manifestations and surveys of ground movements followed by comprehensive subsurface investigations performed after the Kaikoura earthquake characterized the different fill materials at the port and the underlying marine sediments and Wellington Alluvium layers, as well as key aspects of the port's seismic performance. The cone penetration test data together with the grain-size composition of the fills indicate the finer sand-silt fractions of the well-graded gravelly fill had a critical influence on the liquefaction resistance and performance of the gravelly fill during the Kaikoura earthquake. Key insights are shared through examination of this case history involving the liquefaction of gravelly soils.
机译:2016年的M-w 7.8 Kaikoura地震在惠灵顿CentrePort的厚端倾倒砾石填料和液压铺设疏浚砂质填料中造成了广泛的液化和显著的地面移动。整个填海过程中出现了200-300 mm的沉降,在填海边缘附近出现了400-600 mm的沉降,出现了大约0.5-1.5 m的横向移动,进而损坏了码头和结构。将2013年M-w 6.6库克海峡和2013年M-w 6.6格拉斯梅尔湖地震与2016年M-w 7.8凯库拉地震在港口造成的地面运动和损害进行了比较。Kaikoura地震后进行的液化现象记录和地面运动调查,以及全面的地下调查,描述了港口的不同填充材料、下方的海洋沉积物和惠灵顿冲积层,以及港口地震性能的关键方面。锥体贯入试验数据以及填料的粒度组成表明,级配良好的砾石填料中较细的砂粉粒组分对Kaikoura地震期间砾石填料的抗液化性和性能有关键影响。通过对涉及碎石土液化的案例历史的研究,分享了关键见解。

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