5 / 2021-08-02 23:52:11
Numerical simulations of liquid-Solid flows in a vertical pipe by MPS-DEM coupling method
Moving particle semi-implicit method; Discrete element method; liquid-solid flow; Hydraulic conveying; MPSDEM-SJTU solver, periodic boundary condition.
终稿
万德成 / 上海交通大学
谢丰泽 / 上海交通大学
With the further exploitation of deep-sea mineral resources, researchers have paid more attention to the hydraulic conveying. The minerals are transported from the sea bed to the floating structures through the pipe system with the help of seawater. It is necessary to investigate the flow regime and evaluate the attrition of the pipe.

Considering the severe sea condition, the pipeline may oscillate violently, resulting in the more complex liquid-solid flows int the pipeline. A coupled lagrangian-lagrangian method is used to solve such problems. Moving Particles Semi-implicit (MPS) method is adopted to simulate the movement of fluid while the Discrete Element Method (DEM) is employed to trace the motion of solid particles.  In the actual deep-sea hydraulic conveying, the pipeline is very long. Therefore, the periodic boundary condition is used to reduce the computation cost.

In this present work, an in-house solver MPSDEM-SJTU based on the improved MPS and DEM is developed. Firstly, a simulation of landslide-induced surges is conducted to verify the accuracy of this solver. Then, the liquid-solid flows in a vertical pipe are simulated. The influence of fluid velocity to the convey efficiency is investigated. Generally, the MPS-DEM method has the potential to deal with liquid-solid flows conveying problems.

 
重要日期
  • 会议日期

    10月22日

    2021

    10月25日

    2021

  • 09月15日 2021

    提前注册日期

  • 10月25日 2021

    注册截止日期

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SUT 中国分会
大连理工大学
中国石油大学(北京)
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辽宁省力学学会
大连市科学技术协会
工业装备结构分析国家重点实验室
海岸和近海工程国家重点实验室
橡塑制品成型数值模拟与优化学科创新引智基地
大连理工大学宁波研究院
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