LEAP-2017: Comparison of the Type-B Numerical Simulations with Centrifuge Test Results

LEAP-2017: Comparison of the Type-B Numerical Simulations with Centrifuge Test Results
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DOI:
10.1007/978-3-030-22818-7_10
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发表时间:
2019
期刊:
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影响因子:
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通讯作者:
M. Manzari;Mohamed El Ghoraiby;M. Zeghal;B. Kutter;P. Arduino;A. R. Barrero;E. Bilotta;Long Chen;Renren Chen;A. Chiaradonna;A. Elgamal;G. Fasano;K. Fukutake;W. Fuentes;Alborz Ghofrani;S. Haigh;W. Hung;K. Ichii;Dong-Soo Kim;T. Kiriyama;C. Lascarro;G. Madabhushi;Vicente Mercado;J. Montgomery;M. Okamura;O. Ozutsumi;Z. Qiu;M. Taiebat;T. Tobita;T. Travasarou;Dimitra Tsiaousi;K. Ueda;J. Ugalde;T. Wada;Rui Wang;Ming-hui Yang;Jian-Min Zhang;Yan-Guo Zhou;K. Ziotopoulou
M. Manzari;Mohamed El Ghoraiby;M. Zeghal;B. Kutter;P. Arduino;A. R. Barrero;E. Bilotta;Long Chen;Renren Chen;A. Chiaradonna;A. Elgamal;G. Fasano;K. Fukutake;W. Fuentes;Alborz Ghofrani;S. Haigh;W. Hung;K. Ichii;Dong-Soo Kim;T. Kiriyama;C. Lascarro;G. Madabhushi;Vicente Mercado;J. Montgomery;M. Okamura;O. Ozutsumi;Z. Qiu;M. Taiebat;T. Tobita;T. Travasarou;Dimitra Tsiaousi;K. Ueda;J. Ugalde;T. Wada;Rui Wang;Ming-hui Yang;Jian-Min Zhang;Yan-Guo Zhou;K. Ziotopoulou
中科院分区:
其他
文献类型:
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作者:
M. Manzari;Mohamed El Ghoraiby;M. Zeghal;B. Kutter;P. Arduino;A. R. Barrero;E. Bilotta;Long Chen;Renren Chen;A. Chiaradonna;A. Elgamal;G. Fasano;K. Fukutake;W. Fuentes;Alborz Ghofrani;S. Haigh;W. Hung;K. Ichii;Dong-Soo Kim;T. Kiriyama;C. Lascarro;G. Madabhushi;Vicente Mercado;J. Montgomery;M. Okamura;O. Ozutsumi;Z. Qiu;M. Taiebat;T. Tobita;T. Travasarou;Dimitra Tsiaousi;K. Ueda;J. Ugalde;T. Wada;Rui Wang;Ming-hui Yang;Jian-Min Zhang;Yan-Guo Zhou;K. Ziotopoulou

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本文介绍了11组B型数值模拟与LEAP-2017项目中选定的一组离心试验结果的比较。的加速度,超孔隙水压力,和地面的侧向位移的时间历程进行比较,九离心试验的结果。一些数值模拟显示出与实验中观察到的趋势相似的趋势。虽然实现与所有测量响应(加速度,孔隙压力和位移)的紧密匹配是相当具有挑战性的,但数值模拟显示了有前途的能力,可以通过提供额外的高质量实验结果进一步改进。
This paper presents comparisons of 11 sets of Type-B numerical simulations with the results of a selected set of centrifuge tests conducted in the LEAP-2017 project. Time histories of accelerations, excess pore water pressures, and lateral displacement of the ground surface are compared to the results of nine centrifuge tests. A number of numerical simulations showed trends similar to those observed in the experiments. While achieving a close match to all measured responses (accelerations, pore pressures, and displacements) is quite challenging, the numerical simulations show promising capabilities that can be further improved with the availability of additional high-quality experimental results.