References

  1. A.P. Davis, Field performance of bio-retention: water quality, Environ. Eng. Sci., 24 (2007) 1048–1064.
  2. K. Lee, H. Kim, G. Pak, S. Jang, L. Kim, C. Yoo, Z. Yun, J. Yoon, Cost-effectiveness analysis of stormwater best management practices (BMPs) in urban watersheds, Desal. Water Treat., 19 (2010) 92–96.
  3. J.R. Vogel, T.L. Moore, R.R. Coffman, S.N. Rodie, S.L. Hutchinson, K.R. McDonough, A.J. McLemore, J.T. McMaine, Critical review of technical questions facing low impact development and green infrastructure: a perspective from great plains, Water Environ. Res., 87 (2015) 849–862.
  4. J.J. Sansalone, S.S. Pathapati, Particle dynamics in a hydrodynamic separator subject to transient rainfall-runoff, Water Resources Res., 45 (W09408) (2009) 1–14.
  5. D. Saddoris, O Mohseni, J. Gulliver, Assessing Hydrodynamic Separator Under High water Flow Condition, World Environmental & Water Resources Congress, 2009, pp. 864–874.
  6. M.A. Wilson, O. Mohseni, J.S. Gulliver, R.M. Hozalski, H.G. Stefan, Assessment of hydrodynamic separators for storm-water treatment, J. Hydraul. Eng., 135 (2009) 383–392.
  7. K.H. Kwon, S.W. Kim, L.H. Kim, J.H. Kim, S. Lee, K.S. Min, Particle removal properties of stormwater runoff with lab-scale vortex separator, Desal. Water Treat., 38 (2012) 349–353.
  8. D. Tran, J.H. Kang, Optimal design of a hydrodynamic separator for treating runoff from roadways, J. Environ. Manage., 116 (2013) 1–9.
  9. J.P. Veerapen, B.J. Lowry, M.F. Couturier, Design methodology for the swirl separator, Aquacult. Eng., 33 (2005) 21–45.
  10. W. Kraipech, A. Nowakowski, T. Dyakowski, A. Suksangpanomrung, An investigation of the effect of the particle-fluid and particle-particle interactions on the flow within a hydrocyclone, Chem. Eng. J., 111 (2005) 189–197.
  11. M.M. Shi, Y.J. Ruan, J.P. Li, Z.Y. Ye, G. Liu, S.M. Zhu, Numerical study of dense solid-liquid flow in hydrodynamic vortex separator applied in recirculating bio-floc technology system, Aquacult. Eng., 79 (2017) 24–34.
  12. M. Shi, Y. Ruan, B. Wu, Z. Ye, S. Zhu, Performance Evaluation of hydrodynamic vortex separator at different hydraulic retention times applied in recirculating biofloc technology system, J. ASABE, 60 (2017) 1737–1747.
  13. S. Hogg, M.A. Leschziner, Computation of highly swirling confined flow with a Reynolds stress turbulence model, AIAA J., 27 (1989) 57–63.
  14. Y. Yuan, Z. Zhao, L. Tan, Y. Xu, Y. Yuan, Structural improvement of the cyclone separator for separating the biogas impurity particles, Energy Sour. Part A, (2020). https://doi.org/10.1080/1 5567036.2020.1815905
  15. M. Wasilewski, Analysis of the effect of counter-cone location on cyclone separator efficiency, Sep. Purif. Technol., 179 (2017) 236–247.
  16. Q. Zhou, Ch. Wang, H. Wang, J. Wang, Eulerian–Lagrangian study of dense liquid-solid flow in an industrial-scale cylindrical hydro cyclone, Int. J. Mineral Process., 151 (2016) 40–50.