DocumentCode :
3154912
Title :
Simulation and analysis of flow field in abrasive water jet nozzle
Author :
Yuyong, Lei ; Rongjuan, Wang ; Daijun, Jiang ; Kefu, Liu ; Puhua, Tang
Author_Institution :
Sch. of Mech. Eng. & Autom., Xihua Univ., Chengdu, China
fYear :
2011
fDate :
16-18 April 2011
Firstpage :
5219
Lastpage :
5223
Abstract :
Numerical simulation of flow field inside abrasive water jet nozzle on steady, turbulence, two-phase flow conditions was carried out based on FLUENT. The main geometric parameters of abrasive water jet nozzle were analyzed. The results show that the smaller the contraction angle a of the focusing tube, the better flow field inside abrasive water jet nozzle is. Also smaller contraction angle avoids abrasive gathering at the entrance of the focusing tube. The smaller the outlet diameter of focusing tube, the greater velocity of the abrasive can be obtained. On the other hand, the smaller the outlet diameter of focusing tube is, the smaller negative pressure inside the mixing chamber exists. Consequently abrasive inhalation is not good. Outlet diameter of focusing tube should be in the range of 3 times of the jewel orifice. The results show also that the length of the focusing tube has significant effect on the outlet velocity of abrasive. In order to achieve maximum speed of abrasive, the length of cylinder part of focusing tube should be in the range of 30 times of the outlet diameter. Simulation of flow field inside abrasive water jet nozzle and analysis of parameters of the focusing tube provide basis in design of nozzle for abrasive water jet.
Keywords :
flow simulation; jets; mixing; nozzles; numerical analysis; orifices (mechanical); pipe flow; turbulence; two-phase flow; FLUENT; abrasive inhalation; abrasive outlet velocity; abrasive water jet nozzle; contraction angle; flow field simulation; focusing tube length; focusing tube outlet diameter; jewel orifice; main geometric parameters; maximum abrasive speed; mixing chamber; negative pressure; nozzle design; numerical simulation; parameter analysis; steady turbulence two-phase flow conditions; Abrasives; Analytical models; Computational fluid dynamics; Electron tubes; Focusing; Presses; Water jet cutting; Abrasive Water Jet; Abrasive Water Jet Nozzle; Flow Field; Focusing Tube; Simulation; Two Phase Flow;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Consumer Electronics, Communications and Networks (CECNet), 2011 International Conference on
Conference_Location :
XianNing
Print_ISBN :
978-1-61284-458-9
Type :
conf
DOI :
10.1109/CECNET.2011.5768570
Filename :
5768570
Link To Document :
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