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Articles

The Effects of Vortex Finder Dimensions on the Natural Vortex Length in a New Cyclone Separator

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References

  • Alexander, R. M. (1949). Fundamentals of cyclone design and operation, Proceedings of the Australian Institute of Minerals and Metals (New Series), pp. 152–153.
  • Avci, A. , and Karagoz, I. (2003). Effects of flow and geometrical parameters on the collection efficiency in cyclone separators, J. Aerosol Sci ., 34 (7), 937–955.
  • Avci, A. , Karagoz, I. , Surmen, A. , and Camuz, I. (2013). Experimental investigation of the natural vortex length in tangential inlet cyclones, Sep. Sci. Technol ., 48 , 122–126.
  • Buttner, H. (1988). Size separation of particles from aerosol samples using impactors and cyclones, Part. Part. Syst. Charact ., 5 , 87–93.
  • Cortes, C. , and Gil, A. (2007). Modeling the gas and particle flow inside cyclone separators, Prog. Energy Combust. Sci ., 33 , 409–452.
  • Gil, A. , Romeo, L. M. , and Cortes, C. (2001). Cold flow model of a PFBC cyclone, Powder Technol ., 117 , 207–220.
  • Hoffmann, A. C. , de Groot, M. , Peng, W. , Dries, H. W. A. , and Kater, J. (2001). Advantages and risks in increasing cyclone separator length, AIChE J ., 47 (11), 2452–2460.
  • Hoffman , and Stein . (2002). Gas Cyclones and Swirl Tubes: Principles, Design and Operation , Springer, Berlin.
  • Hreiz, R. , Gentric, C. , Midoux, N. , Lainé, R. , and Fünfschilling, D. (2014). Hydrodynamics and velocity measurements in gas–liquid swirling flows in cylindrical cyclones, Chem. Eng. Res. Des ., 92 (11), 2231–2246.
  • Hu, L. Y. , Zhou, L. X. , Zhang, J. , and Shi, M. X. (2005). Studies on strongly swirling flows in the full space of a volute cyclone separator, AIChE J ., 51 (3), 740–749.
  • Karagoz, I. , and Avci, A. (2005). Modelling of the pressure drop in tangential inlet cyclone separators, Aerosol Sci. Technol ., 39 (9), 857–865.
  • Karagoz, I. , Avci, A. , Surmen, A. , and Sendogan, O. (2013). Design and performance evaluation of a new cyclone separator, J. Aerosol Sci ., 59 , 57–64.
  • Kaya, F. , Karagoz, I. , and Avci, A. (2011). Effects of surface roughness on the performance of tangential inlet cyclone separators, Aerosol Sci. Technol ., 45 (8), 988–995.
  • Kuo, K. Y. , and Tsai, C. J. (2001). On the theory of particle collection efficiency of cyclones, Aerosol Air Qual. Res ., 1 (1), 47–56.
  • Peng, W. , Hoffmann, A. C. , Dries, H. W. A. , Regelink, M. A. , and Stein, L. E. (2005). Experimental study of the vortex end in centrifugal separators. The nature of the vortex end, Chem. Eng. Sci ., 60 , 6919–6928.
  • Qian, F. , Zhang, J. , and Zhang, M. (2006). Effects of prolonged vertical tube on the separation performance of a cyclone, J. Hazard. Mater ., 136 , 822–829.
  • Zhang, B. , and Hui, S. (2007). Numerical simulation and PIV study of the turbulent flow in a cyclonic separator. International conference on Power Engineering, October 23–27, 2007, Hangzhou, China.
  • Zhu, Y. , and Lee, K. W. (1999). Experimental study on small cyclones operating at high flow rates, J. Aerosol Sci ., 30 (10), 1303–1315.

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