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Titlebook: Geotechnical Engineering for Disaster Mitigation and Rehabilitation; Proceedings of the 2 Hanlong Liu,An Deng,Jian Chu Conference proceedin

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https://doi.org/10.1007/978-3-663-20380-3c theory, another random variable, denoted as the factor of mixing uniformity, is proposed to quantitatively assess the influences of mixing quality on the strength of pile shaft. The probability density function of this factor is studied, and its applications in conventional design and Reliability-Based Design (RBD) method are analyzed as well.
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Statistical Evaluation for Strength of Pile by Deep Mixing Methodc theory, another random variable, denoted as the factor of mixing uniformity, is proposed to quantitatively assess the influences of mixing quality on the strength of pile shaft. The probability density function of this factor is studied, and its applications in conventional design and Reliability-Based Design (RBD) method are analyzed as well.
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Liquefaction Mitigation of Sand Deposits by Granular Piles- an Overviewed ground deformation can be reduced by various ground-improvement methods including the stone column (gravel drain) technique. Ground improvement by rammed granular piles (RGP) is considered one of the most reliable of these methods. This paper summarizes different mechanisms involved in the effect
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Estimation of Liquefaction-Induced Settlement of River Dikes and their Effect in Lowland Area Duringin the lowland area during earthquakes is seriously concerned. Possibility of the damage was discussed based on the analyses for the deformation of river dikes. Analyzed results showed that the dikes settle dozens of cm and causes flood during strong shaking.
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