破损
沟槽(工程)
联轴节(管道)
机械
离散元法
粒子(生态学)
材料科学
接触力
湍流
结构工程
流量(数学)
影响
接触力学
有限元法
磁层粒子运动
机械工程
工程类
粒径
工作(物理)
计算流体力学
代表(政治)
色散(光学)
法向力
跟踪(教育)
流体力学
作者
Xinhao Luo,Tiancheng Yang,Bo Huang,毛根武,Deliang Dong,Heng Shi,Xiaoliang Li,Bo He
摘要
This study presents a refined design for pneumatic conveying pipelines, featuring a grooved structure at the bend aimed at reducing particle breakage during transportation. Using soybean particles as a focus, the research employs a gas-solid two-phase flow approach to explore how different groove depths and widths influence the breakage rate. We used CFD-DEM simulation techniques, combining fluid mechanics with discrete element modeling to achieve a more accurate representation of particle motion and collision forces during expressing. Based on these simulations, we identified the most effective combination of groove width and spacing. Experimental results showed that a groove width of 4.5 mm coupled with a 40 mm spacing could decrease impact forces on particles by approximately 5% to 10% at expressing speeds of 15 m/s and 20 m/s. Throughout all measured time intervals, the impact forces remained stable, with turbulence exerting minimal influence on the particle forces.
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