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Numerical Simulation Research of Liquid-Solid Two-Phase Flow in Abrasive Water Jet Nozzle 被引量:3

Numerical Simulation Research of Liquid-Solid Two-Phase Flow in Abrasive Water Jet Nozzle
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摘要 According to the Lagrange discrete phase model of multiphase flow, mathematical model of the abrasive water-jet (AWJ) nozzle based on the multi-phase movement was introduced, then the boundary conditions was determined and the liquid-solid turbulence which is isothermal, can not be compressed and steadystate in the cone-cylinder nozzles of the export of the pre-mixed AWJ was simulated applying the software FLUENT. The results showed that: the axial velocity and dynamic pressure of the continuous phase in the nozzle were axial symmetry notable, and at the axis had a extreme point; abrasive accelerated at two points, in front contractive segment, the rate increased rapidly, and in the back straight one, the speed accelerated slowly. The length of the cylinder is 100 mm, the diameter of the nozzle is 8 mm, and the angle of the cone is 15°. There is a extreme point of the rate at the point 10 mm in the established model. The results of simulation laid the foundation for optimizing the nozzle structure, improving efficiency and developing the nozzle. According to the Lagrange discrete phase model of multiphase flow, mathematical model of the abrasive water-jet (AWJ) nozzle based on the multi-phase movement was introduced, then the boundary conditions was determined and the liquid-solid turbulence which is isothermal, can not be compressed and steadystate in the cone-cylinder nozzles of the export of the pre-mixed AWJ was simulated applying the software FLUENT. The results showed that: the axial velocity and dynamic pressure of the continuous phase in the nozzle were axial symmetry notable, and at the axis had a extreme point; abrasive accelerated at two points, in front contractive segment, the rate increased rapidly, and in the back straight one, the speed accelerated slowly. The length of the cylinder is 100 mm, the diameter of the nozzle is 8 mm, and the angle of the cone is 15°. There is a extreme point of the rate at the point 10 mm in the established model. The results of simulation laid the foundation for optimizing the nozzle structure, improving efficiency and developing the nozzle.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2009年第2期157-161,共5页 北京理工大学学报(英文版)
基金 Sponsored by the Key Project of Chinese Ministry of Education(108135) Program for New Century Excellent Talentsin University(NCET-07-0799) National Eleventh Five-Year Key Science & Technology Project(2006BAK03B0303) the Fok Ying-Tong Education Foundation for Young Teachers in the Higher Education Institutions of China(111053) Beijing Science & Technology New StarPlan(2006A81)
关键词 water jet cutting ABRASIVE NOZZLE numerical simulation water jet cutting abrasive nozzle numerical simulation
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