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PMID: 25680396 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Comparing the performances of circular ponds with different impellers by CFD simulation and microalgae culture experiments.

Bioprocess and biosystems engineering ·Vol. 38 ·No. 7 ·2015-07-00 ·页码 1347-63

Meng C, Huang J, Ye C, Cheng W, Chen J, Li Y

Abstract

In this study, a numerical simulation using computational fluid dynamics (CFD) was used to investigate the hydrodynamic characteristics of circular ponds with three different impellers (hydrofoil, four-pitched-blade turbine, and grid plate). The reliability of the CFD model was validated by particle image velocimetry (PIV). Hydrodynamic analyses were conducted to evaluate the average velocity magnitude along the light direction (Uz), turbulence properties, average shear stress, pressure loss and the volume percentage of dead zone inside circular ponds. The simulation results showed that Uz value of hydrofoil was 58.9, 40.3, and 28.8% higher than those of grid plate with single arm, grid plate with double arms and four-pitched blade turbines in small-scale circular ponds, respectively. In addition, hydrofoil impeller with down-flow operation had outstanding mixing characteristics. Lastly, the results of Chlorella pyrenoidosa cultivation experiments indicated that the biomass concentration of hydrofoil impeller with down-flow operation was 65.2 and 88.8% higher than those of grid plate with double arms and four-pitched-blade turbine, respectively. Therefore, the optimal circular pond mixing system for microalgae cultivation involved a hydrofoil impeller with down-flow operation.

MeSH 主题词
Chlorella/cytology Hydrodynamics Ponds
作者与单位
共 6 位作者,点击展开单位 / ORCID
Meng Chen
State Key Laboratory of Chemical Engineering, East China University of Science and Technology, Meilong Road 130, Mail Box 301, Shanghai, 200237, People's Republic of China.
Huang Jianke
Ye Chunyu
Cheng Wenchao
Chen Jianpei
Li Yuanguang
Article Info
Journal
Bioprocess and biosystems engineering
Abbr.
Bioprocess Biosyst Eng
ISSN
1615-7605
Published
2015-07-00
电子出版
2015-00-14
页码
1347-63
Language
English
Country/Region
Germany
NLM ID
101088505
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