AbstractNumerical works have been conducted to investigate the effect of nozzle geometries on the discharge coefficient. Several contoured converging nozzles with finite radius of curvatures, conically converging nozzles and conical divergent orifices have been employed in this investigation. Each nozzle and orifice has a nominal exit diameter of 12.7×10−3m. A 3rd order MUSCL finite volume method of ANSYS Fluent 13.0 was used to solve the Reynolds-averaged Navier–Stokes equations in simulating turbulent flows through various nozzle inlet geometries. The numerical model was validated through comparison between the numerical results and experimental data. The results obtained show that the nozzle geometry has pronounced effect on the sonic li...
ABSTRACT This study made a numeric evaluation of the effect of convergent geometry on the position a...
The present paper introduces a novel transient experimental method employed to determine the dischar...
Natural gas flow contains undesirable solid particles, liquid condensation, and/or oil droplets and ...
Numerical works have been conducted to investigate the effect of nozzle geometries on the discharge ...
AbstractNumerical works have been conducted to investigate the effect of nozzle geometries on the di...
The purpose of this investigation is to understand flow characteristics in mini/micro sonic nozzl...
Nozzles belong to the main parts of a low-NOx gas burner. Their purpose is to transport fuel into a ...
grantor: University of TorontoNon-ideal flows through angled orifices occur often in engin...
The purpose of this investigation is to understand flow characteristics in mini/micro sonic nozzles,...
The viscous flow in an axisymmetric nozzle was analyzed while accounting for the mesh sizes in both ...
Sonic discharge coefficients are obtained for two different geometry flow nozzles using high-pressur...
This dissertation investigated the flow behavior of converging-diverging nozzle numerically. Results...
Choked converging nozzle flow and heat transfer characteristics are numerically investigated by mean...
Flows of incompressible, time-independent purely viscous power-law fluids through pressure nozzle wi...
An attempt is made to obtain a simple, explicit and analytical expression for the discharge coeffici...
ABSTRACT This study made a numeric evaluation of the effect of convergent geometry on the position a...
The present paper introduces a novel transient experimental method employed to determine the dischar...
Natural gas flow contains undesirable solid particles, liquid condensation, and/or oil droplets and ...
Numerical works have been conducted to investigate the effect of nozzle geometries on the discharge ...
AbstractNumerical works have been conducted to investigate the effect of nozzle geometries on the di...
The purpose of this investigation is to understand flow characteristics in mini/micro sonic nozzl...
Nozzles belong to the main parts of a low-NOx gas burner. Their purpose is to transport fuel into a ...
grantor: University of TorontoNon-ideal flows through angled orifices occur often in engin...
The purpose of this investigation is to understand flow characteristics in mini/micro sonic nozzles,...
The viscous flow in an axisymmetric nozzle was analyzed while accounting for the mesh sizes in both ...
Sonic discharge coefficients are obtained for two different geometry flow nozzles using high-pressur...
This dissertation investigated the flow behavior of converging-diverging nozzle numerically. Results...
Choked converging nozzle flow and heat transfer characteristics are numerically investigated by mean...
Flows of incompressible, time-independent purely viscous power-law fluids through pressure nozzle wi...
An attempt is made to obtain a simple, explicit and analytical expression for the discharge coeffici...
ABSTRACT This study made a numeric evaluation of the effect of convergent geometry on the position a...
The present paper introduces a novel transient experimental method employed to determine the dischar...
Natural gas flow contains undesirable solid particles, liquid condensation, and/or oil droplets and ...