• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊
石安宁, 蒋明镜, 杨耿超, 郭颂怡, 王思远, 林嘉禹. 太空环境下颗粒材料流动特性离散元分析:立柱坍塌试验[J]. 岩土工程学报. DOI: 10.11779/CJGE20240111
引用本文: 石安宁, 蒋明镜, 杨耿超, 郭颂怡, 王思远, 林嘉禹. 太空环境下颗粒材料流动特性离散元分析:立柱坍塌试验[J]. 岩土工程学报. DOI: 10.11779/CJGE20240111
Discrete element analysis on granular material of flow mobility characteristics under the extraterrestrial environment: Insight from column collapse test[J]. Chinese Journal of Geotechnical Engineering. DOI: 10.11779/CJGE20240111
Citation: Discrete element analysis on granular material of flow mobility characteristics under the extraterrestrial environment: Insight from column collapse test[J]. Chinese Journal of Geotechnical Engineering. DOI: 10.11779/CJGE20240111

太空环境下颗粒材料流动特性离散元分析:立柱坍塌试验

Discrete element analysis on granular material of flow mobility characteristics under the extraterrestrial environment: Insight from column collapse test

  • 摘要: 随着各国对深空探测的兴趣日益增加,研究太空环境对颗粒柱坍塌流动特性及破坏模式的影响对于太空探索中的原位资源利用、基地选址及建造具有十分重要的指导意义。本文采用离散单元法对不同范德华吸引力影响下颗粒柱崩塌流动特性及破坏模式进行了研究。首先,使用考虑范德华吸引力的三维完整接触模型,以模拟不同范德华力作用下的颗粒柱坍塌;随后,进行了不同范德华力工况下的颗粒柱坍塌离散元模拟;最后,对不同工况下颗粒柱坍塌的流动特性及破坏模式进行了对比分析。离散元结果表明:在颗粒柱坍塌过程中,高速度梯度、高转动速度颗粒及稀疏接触位置分布具有较强的正相关性。随着范德华力的增加,颗粒柱坍塌破坏模式分为以下三种:弥散型、局部型和稳定型(即无破坏)。在弥散型破坏中,范德华力对颗粒平动速度、转动速度、流动性系数、能量转换和能量耗散占比影响不明显,而在局部型破坏中,范德华力的增加会显著降低颗粒平动速度、转动速度及流动性系数,使重力势能消耗量和阻尼耗散能占比明显减小。

     

    Abstract: With the increasing interest of countries in deep space exploration, investigating the effect of space environment on the flow mobility and failure mode of granular column collapse, has a vital significance for in-situ resource utilization, base site selection, and construction. This paper employed the discrete element method (DEM) to study the influence of van der Waals force on the flow mobility and failure mode of granular column collapse. First, a complete three-dimensional contact model, considering the van der Waals force between particles, is used to study the flow mobility and failure mode of column collapse. Second, the granular column collapse tests under different van der Waals force are simulated using DEM. Finally, a contrastive analysis of van der Waals force influence on the flow mobility and failure mode of column collapse is performed. The simulation results show that, during the column collapse process, the high granular velocity gradient, the high granular rotational velocity, and the sparse contact location distribution, have a positive correlation. Three failure modes of column collapse have been identified with the van der Waals force increased, which are the diffusive type, local type, and stable type. In the failure mode of diffusive type, the van der Waals force has little influence on the granular translational and rotational velocities, the flow mobility index, the energy conversion, and the ratio of energy dissipation, however, in the failure mode of local type, with the van der Waals force increased, the granular translational and rotational velocities, the flow mobility index, the energy conversion, and the ratio of energy dissipation decrease significantly.

     

/

返回文章
返回