Numerical simulation of cascaded cyclone separator for nanosize aerosol

Author(s):  
Sonawane Chandrakant R. ◽  
Atul Kulkarni ◽  
Rohan V. Sawant ◽  
Anand Kumar Pandey ◽  
Hitesh Panchal ◽  
...  
2011 ◽  
Vol 415-417 ◽  
pp. 1516-1520
Author(s):  
Xue Ping Wang ◽  
Zhen Wei Zhang

This paper mainly focuses on the numerical simulation of the gas flow field of cyclone separator. The authors took advanced of RSM turbulence model of software Fluent to simulate the gas field. The regulations among structure parameter of exhaust pipe, pressure lose and separation efficiency can be obtained according to the numerical simulation results under the situation of changing the structural parameters. The conclusion of this paper can put forward the theoretical reference for the structure optimization of cyclone separation.


Author(s):  
Yigang Luan ◽  
Lianfeng Yang ◽  
Tao Sun

Axial flow cyclone separator with guide blade has been widely used, due to its low resistance, huge gas processing and small volume. Although its structure is simple, three-dimension strong rotating turbulent flow forms which involves many complex interactions such as dual-phase separation, adsorption and electrostatic interference. This paper is focused on studying the resistance performance of the axial flow cyclone separator. Numerical simulation methods are carried out to acquire the internal flow field characteristics under different operating pressure and temperature conditions. The result shows that the pressure drop decreases under the same operating pressure, as the operating temperature increases. When the operating temperature is the same, the higher operating pressure enhances the value of the pressure drop. Velocity distribution, pressure contours and turbulent viscosity contours have been presented, to analyze the characteristics of the internal airflow, so as to help optimize the design. Experiments are intended to verify the results of numerical simulation and explore the internal flow field of the cyclone separator further. The cyclone separator has 8 rotary blades which are split into 8 parts, namely one blade is 45° in the tangential direction. 0° and 22.5° are chosen in the experiment. The dimensionless pressure distribution is shown. A comparison of the CFD results and the experimental results is made to prove that the numerical simulation methods are correct and accurate. The curve of the numerical simulation results is very close to that of the experimental results with the similar trend. It is concluded that the methods can predict the internal flow field characteristics of the axial flow cyclone separator.


2011 ◽  
Vol 210 (3) ◽  
pp. 293-303 ◽  
Author(s):  
Yaxin Su ◽  
Anqiao Zheng ◽  
Bingtao Zhao

2019 ◽  
Vol 58 (31) ◽  
pp. 14323-14332 ◽  
Author(s):  
Juan Sebastian Cornejo Caceres ◽  
Natalia Prieto ◽  
German Gonzalez ◽  
Arlex Chaves-Guerrero

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