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首页> 外文期刊>Journal of Asian earth sciences >Discrete element modeling of the mass movement and loose material supplying the gully process of a debris avalanche in the Bayi Gully, Southwest China
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Discrete element modeling of the mass movement and loose material supplying the gully process of a debris avalanche in the Bayi Gully, Southwest China

机译:中国西南八一沟壑区雪崩过程中物质运动和疏松物质供应沟渠过程的离散元模拟

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The dynamic process of a debris avalanche in mountainous areas is influenced by the landslide volume, topographical conditions, mass-material composition, mechanical properties and other factors. A good understanding of the mass movement and loose material supplying the gully process is very important for understanding the dynamic properties of debris avalanches. Three-dimensional particle flow code (PFC3D) was used to simulate a debris avalanche in Quaternary deposits at the Bayi Gully, Southwest China. FORTRAN and AutoCAD were used for the secondary development to display the mass movement process and to quantitatively describe the mass movement and loose material supplying the gully process. The simulated results show that after the landslide is initiated, the gravitational potential energy is converted into kinetic energy with a variation velocity for the sliding masses. Two stages exist for the average-movement velocity: the acceleration stage and the slowdown stage, which are influenced by the topographical conditions. For the loose materials supplying the gully process, the cumulative volume of the sliding masses into the gully gradually increases over the time. When the landslide volume is not large enough, the increasing landslide volume does not obviously influence the movement process of the sliding masses. The travel distance and movement velocity increase with the decreasing numerical parameters, and the mass-movement process is finished more quickly using low-value parameters. The deposition area of the sliding masses decreases with the increasing numerical parameters and the corresponding deposition thickness increases. The mass movement of the debris avalanche is not only influenced by the mechanical parameters but is also controlled by the topographical conditions.
机译:山区雪崩的动态过程受滑坡体积,地形条件,物质组成,机械性能和其他因素的影响。深入了解泥沟运动的质量运动和疏松物质对于了解碎片雪崩的动力学特性非常重要。三维粒子流代码(PFC3D)用于模拟中国西南八一沟的第四纪沉积物中的碎屑雪崩。 FORTRAN和AutoCAD用于二次开发,以显示质量运动过程,并定量描述质量运动和供应沟壑过程的松散物料。模拟结果表明,滑坡发生后,重力势能被转换为动能,其滑动质量随速度变化。平均运动速度存在两个阶段:加速阶段和减速阶段,这两个阶段受地形条件的影响。对于供应沟渠过程的松散物料,随着时间的推移,进入沟渠的滑动块的累积体积逐渐增加。当滑坡量不够大时,增加的滑坡量不会明显影响滑动块的运动过程。随着数值参数的减小,行进距离和运动速度也随之增加,并且使用低值参数可以更快地完成质量运动过程。滑动块的沉积面积随着数值参数的增加而减小,并且相应的沉积厚度增加。碎片雪崩的质量运动不仅受机械参数的影响,而且还受地形条件的控制。

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