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Investigation of the Extraction of the Casing for Large Diameter Cast-in-Place Piles by Vibratory Hammers in Clays

机译:粘土中振动锤对大直径铸造桩提取的研究

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摘要

The Benoto cast-in-place piles are widely used in civil engineering for having the advantage of producing low vibration and noise. Therefore, more researches are needed to fully understand its mechanism. However, the researches on the mechanism of Benoto piles are only limited to the driving stage, the study of extraction stage of the steel casing is not comprehensive. In this paper, a three-dimensional numerical model was developed by Coupled Eulerian–Lagrangian method. The mechanism of high-frequency vibratory extraction of casing was studied in detail. The result indicates that the vibratory casing extraction process can be divided into two stages, namely the slow and fast extraction stage. During the vibratory casing extraction process, the soil displacement, stresses, void ratio and excess pore water pressure abruptly change in the soils around the casing bottom. Furthermore, the influence of vibratory hammers on vibratory casing extraction was investigated. The change in the excitation frequency and excitation force has effect on casing extraction speed and soil particle velocity, but hardly has any influence on soil displacement and stresses.
机译:BenoTo铸造桩广泛用于土木工程,以产生低振动和噪音的优点。因此,需要更多的研究来充分了解其机制。然而,对Benoto桩机构的研究仅限于驾驶阶段,钢外壳的提取阶段的研究不全面。本文采用耦合欧拉拉格朗日方法开发了三维数值模型。详细研究了壳体的高频振动提取机理。结果表明,振动套管提取过程可分为两个阶段,即慢速和快速提取阶段。在振动套管提取过程中,土壤位移,应力,空隙率和过量的孔隙水压突然在壳体底部周围的土壤变化。此外,研究了振动锤对振动套管提取的影响。激发频率和激发力的变化对壳体提取速度和土壤颗粒速度有影响,但几乎没有对土壤位移和应力的影响。

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