Cheng Jiarui, Dou Yihua, Zhang Ningsheng, Li Zhen, Wang Zhiguo
State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
Department of Mechanical Engineering, Xi'an Shiyou University, Xi'an 710065, China.
Materials (Basel). 2018 Sep 28;11(10):1858. doi: 10.3390/ma11101858.
A numerical study on the erosion of particle clusters in an abrupt pipe was conducted by means of the combined computational fluid dynamics (CFD) and discrete element methods (DEM). Furthermore, a particle-wall extrusion model and a criterion for judging particle collision interference were developed to classify and calculate the erosion rate caused by different interparticle collision mechanisms in a cluster. Meanwhile, a full-scale pipe flow experiment was conducted to confirm the effect of a particle cluster on the erosion rate and to verify the calculated results. The reducing wall was made of super 13Cr stainless steel materials and the round ceramsite as an impact particle was 0.65 mm in diameter and 1850 kg/m³ in density. The results included an erosion depth, particle-wall contact parameters, and a velocity decay rate of colliding particles along the radial direction at the target surface. Subsequently, the effect of interparticle collision mechanisms on particle cluster erosion was discussed. The calculated results demonstrate that collision interference between particles during one cluster impact was more likely to appear on the surface with large particle impact angles. This collision process between the rebounded particles and the following particles not only consumed the kinetic energy but also changed the impact angle of the following particles.
通过计算流体动力学(CFD)和离散元方法(DEM)相结合的方式,对突然扩张管道中颗粒团簇的冲蚀进行了数值研究。此外,还建立了颗粒-壁面挤压模型和颗粒碰撞干涉判断准则,以对团簇中不同颗粒间碰撞机制引起的冲蚀率进行分类和计算。同时,进行了全尺寸管道流动实验,以确认颗粒团簇对冲蚀率的影响并验证计算结果。缩径壁由超级13Cr不锈钢材料制成,作为冲击颗粒的圆形陶粒直径为0.65mm,密度为1850kg/m³。结果包括冲蚀深度、颗粒-壁面接触参数以及碰撞颗粒在靶表面沿径向的速度衰减率。随后,讨论了颗粒间碰撞机制对颗粒团簇冲蚀的影响。计算结果表明,在一次团簇冲击过程中,颗粒间的碰撞干涉更有可能出现在颗粒冲击角较大的表面。反弹颗粒与后续颗粒之间的这种碰撞过程不仅消耗了动能,还改变了后续颗粒的冲击角。