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基于并行SPH方法的地震滑坡对桥桩的冲击作用
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Impact of Earthquake-induced Landslide on Bridge Pile Based on Parallelized SPH Method
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    摘要:

    邻近边坡的桥桩结构对滑坡失稳冲击荷载的承受力决定着它能否安全运行,因此 对地震荷载下边坡失稳冲击桥桩结构的研究为桥梁工程设计和建设所迫切需要. 利用光滑粒 子流体动力学方法跟踪粒子特性时间变化和模拟大变形的特性,提出了地震作用边坡滑坡冲 击桥桩结构的光滑粒子流体动力学算法,进行了地震加速度幅值、频谱、持时等参数对地震滑 坡规律及滑坡冲击桥桩结构影响的研究,并研究了不同线程数对并行计算效率的影响 . 结果 表明,地震加速度幅值增大会加快土体滑动速度和增大冲击体积量,对土体滑动冲击体积量 的增大存在地震加速度临界值,大于该临界值时,冲击量增大幅度变大;在一定频率范围内, 土体滑动速度和冲击体积量随地震反应谱峰值频率增大而增大,滑动土体对桥桩结构的冲击 随之提前;地震持时增长,滑坡体的中部和后缘部分位移明显增大,冲击体积量增大;采用优 化算法能够充分利用线程,大幅提高计算效率.

    Abstract:

    Whether the bridge pile structures adjacent to the slopes can support the threats of the landslides im? pact determines that the bridge can provide safe service. Therefore,the research on the slope instability mechanism and the law of sliding mass impact on bridge pile structure under earthquake and rainfall is an urgent need for bridge engineering design and construction. Based on the advantages of Smoothed Particle Hydrodynamics method,such as tracking the time change of particle characteristics and simulating large deformation,a parallelized Smoothed Particle Hydrodynamics algorithm was proposed to simulate the process of earthquake-induced landslides impact on bridge pile structure. The effects of seismic acceleration amplitude,frequency spectrum,duration on analyzing law of impact by rainfall-induced landslide and earthquake-induced landslide on bridge pile structure were analyzed, and the effect of different number of threads on the efficiency of parallel computing were studied. The results showed that the increase of seismic acceleration amplitude can accelerate the soil sliding impact on bridge pile structure and increase the impact volume. There was a seismic acceleration critical value for the increase of soil sliding impact vol? ume. If it was greater than the critical value,the increase of soil sliding volume was larger. In a certain frequency range,the sliding velocity and impact volume of soil increased with the increase of the peak frequency of seismic re? sponse spectrum,and the impact of sliding soil on bridge pile structure was accelerated. With the increasing propor? tion of the earthquake duration,the displacement of the middle and rear edge of the slope increased obviously,and the impact volume of the sliding soil on the bridge pile structure also increased. The optimization algorithm can make full use of threads and greatly improve the computing efficiency.

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王占彬 ,张卫杰 ,张健 ,代登辉 ,高玉峰 .基于并行SPH方法的地震滑坡对桥桩的冲击作用[J].湖南大学学报:自然科学版,2022,49(7):54~65

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  • 在线发布日期: 2022-08-18
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