References
- L. Fan, N. Xu, Zh. Wang, H. Shi, PDA experiments and CFD
simulation of a lab-scale oxidation ditch with surface aerators,
Chem. Eng. Res. Des., 88 (2010) 23–33.
- W.-M. Xie, R. Zhang, W.-W. Li, B.-J. Ni, F. Fang, G.-P. Sheng,
H.-Q. Yu, J. Song, D.-Z. Le, X.-J. Bi, C.-Q. Liu, M. Yang,
Simulation and optimization of a full-scale Carrousel oxidation
ditch plant for municipal wastewater treatment, Biochem.
Eng. J., 56 (2011) 9–16.
- V. Diamantis, I. Papaspyrou, P. Melidis, A. Aivasidis, High
aeration rate enhances flow stratification in full-scale oxidation
ditch, Bioprocess Biosyst. Eng., 33 (2010) 293–298.
- B. Li, W. Cao, Research on improvement effects of brush aerator,
Water Purif. Technol., 27 (2008) 67–69 (in Chinese).
- Z. Li, J. He, Y. Xu, H. Song, Characteristics of flow fields in
oxidation ditches under action of aeration turntables, J. Hohai
Univ. (Nat. Sci.), 39 (2011) 143–147 (in Chinese).
- Y. Yang, J. Yang, J. Zuo, Y. Li, S. He, X. Yang, K. Zhang, Study
on two operating conditions of a full-scale oxidation ditch
foroptimization of energy consumption and effluent quality by
using CFD model, Water Res., 45 (2011) 3439–3452.
- L. Lei, J. Ni, Three-dimensional three-phase model
forsimulation of hydrodynamics, oxygen masstransfer, carbon
oxidation, nitrification anddenitrification in an oxidation ditch,
Water Res., 53 (2014) 200–214.
- H. Xie, J. Yang, Y. Hu, H. Zhang, Y. Yang, K. Zhang, X. Zhu,
Y. Li, C. Yang, Simulation of flow field and sludge settling in
a full-scale oxidation ditch by using a two-phase flow CFD
model, Chem. Eng. Sci., 109 (2014) 296–305.
- F. Dang, Sh. Zhang, Guide plate in the productive application
of oxidation ditch, Liaoning Urban and Rural, Environ. Sci.
Technol., 25 (2005) 29–31 (in Chinese).
- G. Chen, H. Zhao, J. Zhou, Study on flow characteristics of
oxidation ditch with/without one-side guide wall, Energy Res.
Manage., 4 (2010) 26–29 (in Chinese).
- W. Wei, X. Chen, W.L. Lou, Y. Cai, J. Wei, Y. Zheng, CFD method
for the liquid–gas two-phase flow fields in an Orbal oxidation
ditch, Desal. Water Treat., 126 (2018) 135–143.
- W. Wei, Y. Liu, B. Lv, Numerical simulation of optimal
submergence depth of impellers in an oxidation ditch, Desal.
Water Treat., 57 (2016) 8228–8235.
- W. Wei, Ch. Wang, J. Wei, Y. Cai, Y. Chang, B. Lv, Y. Hu,
CFD for the influence of submergence depth of impellers on
the flow field and sludge concentration distributions in an
oxidation ditch, Desal. Water Treat., 201 (2020) 86–94.
- E.J. Finnemore, J.B. Franzini, Fluid Mechanics with Engineering
Applications (10th ed.), McGraw-Hill Companies, Inc., New
York, 2002.