Aeration involves the intimate mixing of air with water. Air contains 21% oxygen and thus aeration adds dissolved oxygen that is vital to the sustained health of ponds and lakes, reversing lake degradation. Water jet aeration is an effective method of achieving this. A water jet passing through the surrounding air entrains a substantial amount of air bubbles into the receiving water and creates a large air–water contact area. This paper investigates the addition of a venturi tube in a plunging water jet aeration system and, in particular, the effect of varying angles of converging and diverging cones and outlet lengths on air entrainment. A negative pressure draws air in through holes at the throat portion of the venturi tube. The resulting aeration of the jet affects its expansion and its surface roughness and hence the air entrainment rate. It was demonstrated that the values of the air entrainment rate of the venturi tube were significantly higher than those for a circular nozzle. As a result, venturi tubes can be used as highly effective aerators in aeration systems.
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March 2005
Research Article|
March 01 2005
Influence of venturi cone angles on jet aeration systems Available to Purchase
A. Baylar, PhD, MSc;
A. Baylar, PhD, MSc
Firat University
Elazig Turkey
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F. Ozkan, PhD, MSc;
F. Ozkan, PhD, MSc
Firat University
Elazig Turkey
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M. Ozturk, PhD, MSc
M. Ozturk, PhD, MSc
Firat University
Elazig Turkey
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Publisher: Emerald Publishing
Received:
May 05 2004
Accepted:
August 19 2004
Online ISSN: 1751-7729
Print ISSN: 1741-7589
© 2005 Thomas Telford Ltd
2005
Proceedings of the Institution of Civil Engineers - Water Management (2005) 158 (1): 9–16.
Article history
Received:
May 05 2004
Accepted:
August 19 2004
Citation
Baylar A, Ozkan F, Ozturk M (2005), "Influence of venturi cone angles on jet aeration systems". Proceedings of the Institution of Civil Engineers - Water Management, Vol. 158 No. 1 pp. 9–16, doi: https://doi.org/10.1680/wama.2005.158.1.9
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