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Titlebook: Geotechnics for Sustainable Infrastructure Development; Phung Duc Long,Nguyen Tien Dung Conference proceedings 2020 Springer Nature Singap

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发表于 2025-3-21 16:10:11 | 显示全部楼层 |阅读模式
书目名称Geotechnics for Sustainable Infrastructure Development
编辑Phung Duc Long,Nguyen Tien Dung
视频video
概述Presents selected articles from the 4th International Conference on Geotechnics for Sustainable Infrastructure Development, Vietnam.Discusses essential new topics in sustainable development: landslide
丛书名称Lecture Notes in Civil Engineering
图书封面Titlebook: Geotechnics for Sustainable Infrastructure Development;  Phung Duc Long,Nguyen Tien Dung Conference proceedings 2020 Springer Nature Singap
描述.This book presents 09 keynote and invited lectures and 177 technical papers from the 4.th. International Conference on Geotechnics for Sustainable Infrastructure Development, held on 28-29 Nov 2019 in Hanoi, Vietnam. The papers come from 35 countries of the five different continents, and are grouped in six conference themes:  1) Deep Foundations; 2) Tunnelling and Underground Spaces; 3) Ground Improvement; 4) Landslide and Erosion; 5) Geotechnical Modelling and Monitoring; and 6) Coastal Foundation Engineering. The keynote lectures are devoted by Prof. Harry Poulos (Australia), Prof. Adam Bezuijen (Belgium), Prof. Delwyn Fredlund (Canada), Prof. Lidija Zdravkovic (UK), Prof. Masaki Kitazume (Japan), and Prof. Mark Randolph (Australia). Four invited lectures are given by Prof. Charles Ng, ISSMGE President, Prof.Eun Chul Shin, ISSMGE Vice-President for Asia, Prof. Norikazu Shimizu (Japan), and Dr.Kenji Mori (Japan)... .
出版日期Conference proceedings 2020
关键词Deep foundations; Tunnelling spaces; Coastal foundation; Geotechnical modeling; Underground spaces; Groun
版次1
doihttps://doi.org/10.1007/978-981-15-2184-3
isbn_softcover978-981-15-2186-7
isbn_ebook978-981-15-2184-3Series ISSN 2366-2557 Series E-ISSN 2366-2565
issn_series 2366-2557
copyrightSpringer Nature Singapore Pte Ltd. 2020
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Settlement behavior of piled raft foundation supporting residential building adjacent to tall pile fan 18-story building supported by pile foundation. The strain acts on piles, contact earth pressure between raft and soil, water pressure beneath the raft and the settlements at 1st floor or B1 floor were measured. From the long-term field monitoring, the load sharing between raft and piles was eval
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Settlement and pile response in a long-term vertically loaded piled raft foundation model on saturat prepared by consolidating a slurry mixture of Kasaoka clay and Silica sand. The model foundation consisted of a square raft and 9 piles with a pile spacing of 3. (.: pile diameter). For the loading test of PR, vertical load was increased by multiple steps and each load step was maintained for a suf
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Study on effect of vertical load on performance of horizontallyloaded pile foundations through threeional finite element method. In this study, horizontal load tests on pile foundation models, working in different supporting conditions of pile group or piled raft, in a dry silica sand ground are simulated. The hypoplastic model, an incrementally nonlinear constitutive model, is used to model the g
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Linear analysis of a circular pile under vertical load in layered soilssoils. The properties of each soil layer are assumed to be constant but can vary from layer to layer. The method is based on energy principles and variational approach with an explicit solution by using the finite element method in pile displacement approximation. Bar elements models the pile and so
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Influence of horizontal loading position on lateral resistance characteristics of pilessubgrade reaction models, which demonstrate the response of the ground. However, sufficient understanding is still lacking. The impact of the subgrade reactions on the horizontal resistance characteristics of a pile depends on the deformation mode of the pile. In this study, the relationship between
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