The Effect of Mixing Chamber Configuration and Submersion Depth on Centrifugal Aerator Performance

Author:

Zhang Zhen,Zheng Yuan,Xu XiwangORCID,Peng Bin

Abstract

Centrifugal aerators are a vital piece of equipment in water treatment. To improve the efficiency and economy of their operation, a study of their mixing chamber structure and submergence depth was carried out using a combination of numerical simulations and experiments. A centrifugal aerator dissolved oxygen (DO) test bench was built and the numerical simulation was compared with the experiment, the inlet air flow rate showing only a 2.23% error, which verifies the reliability of the numerical simulation. The results show that the capacity of oxygen dissolved in the aeration tank increases and then decreases as the relative area ratio (ð) of the mixing chamber increases, reaching the best capacity at ð = 8.38. In the case of different submergence coefficients (β), the gas volume fraction increased by 31.29% on average at β = 0.15; the standard oxygen transfer rate (SOTR) increased and then decreased with the increase of β, with an average increase of 56.6%. Moreover, the oxygenation performance of centrifugal aerators was significantly improved by the reasonable submergence depth and the structure of the mixing chamber.

Funder

National Key Research and Development Program Intergovernmental International Science and Technolo-gy Innovation Cooperation Program

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference20 articles.

1. Operational characteristic evaluation of liquid-pump type deep shaft aerator.

2. Comparisons of oxygen-transfer rates and water-circulating capabilities of emergency aerators for fish ponds

3. Study on Oxygenation Performance of Solid Jet Aerator having Circular Opening corresponding to Variable Jet Length and Flow Area

4. Study on oxygen transfer by solid jet aerator with multiple openings. Engineering science and technology;Shukla;Int. J.,2018

5. Modelling of single-phase flow in the stator channels of submersible aerator;Bılek;Eng. Mech.,2014

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