DocumentCode
3189517
Title
Numerical & Experimental Investigation of Flow Through A Cavitating Venturi
Author
Yazici, B. ; Tuncer, I.H. ; Ak, M. Ali
Author_Institution
TUBITAK-SAGE, Ankara
fYear
2007
fDate
14-16 June 2007
Firstpage
236
Lastpage
241
Abstract
Cavitating venturies are one of the simplest devices to use on a flow line to control the flow rate without using complex valve and measuring systems. It has no moving parts and complex electronic systems. This simplicity increases the reliability of the venturi and makes it a superior element for the military and critical industrial applications. Although cavitating Venturis have many advantages and many areas of use, due to the complexity of the physics behind Venturi flows, the characteristics of the Venturies are mostly investigated experimentally. In this study, Venturi flows are investigated numerically and experimentally. Two-dimensional axisymmetric cavitating Venturi flows are computed using a commercial flow solver FLUENT. An experimental study is then performed to assess the numerical solutions. The effect of the inlet angle, outlet angle, ratio of throat length to inlet diameter and ratio of throat diameter to inlet diameter on the discharge coefficient, and the oscillation behavior of the cavitating bubble are investigated in details.
Keywords
aerospace propulsion; bubbles; cavitation; flow control; fuel systems; pipe flow; reliability; rocket engines; 2D axisymmetric cavitating Venturi flows; FLUENT; cavitating bubble; complex electronic systems; critical industrial applications; flow line; flow rate control; flow solver; military applications; reliability; throat diameter; Aerospace control; Control systems; Defense industry; Electrical equipment industry; Fluid flow; Fluid flow measurement; Fuel processing industries; Industrial control; Physics; Valves;
fLanguage
English
Publisher
ieee
Conference_Titel
Recent Advances in Space Technologies, 2007. RAST '07. 3rd International Conference on
Conference_Location
Istanbul
Print_ISBN
1-4244-1057-6
Electronic_ISBN
1-4244-1057-6
Type
conf
DOI
10.1109/RAST.2007.4283984
Filename
4283984
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