The Two-Phase Conical Swirl Atomizers: Spray Characteristics
This paper presents the results of experimental studies on two-phase conical swirl atomizers. The impact of various atomizer geometries and different operational parameters of the atomization process on the spray characteristics was investigated. The influence of the mixing chamber height <i>H...
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doaj-cadfdd7e3b94459c93888983978c40ef2020-11-25T02:32:39ZengMDPI AGEnergies1996-10732020-07-01133416341610.3390/en13133416The Two-Phase Conical Swirl Atomizers: Spray CharacteristicsMarek Ochowiak0Andżelika Krupińska1Sylwia Włodarczak2Magdalena Matuszak3Małgorzata Markowska4Marcin Janczarek5Tomasz Szulc6Department of Chemical Engineering and Equipment, Poznan University of Technology, 60-965 Poznan, PolandDepartment of Chemical Engineering and Equipment, Poznan University of Technology, 60-965 Poznan, PolandDepartment of Chemical Engineering and Equipment, Poznan University of Technology, 60-965 Poznan, PolandDepartment of Chemical Engineering and Equipment, Poznan University of Technology, 60-965 Poznan, PolandDepartment of Chemical Engineering and Equipment, Poznan University of Technology, 60-965 Poznan, PolandDepartment of Chemical Engineering and Equipment, Poznan University of Technology, 60-965 Poznan, PolandIndustrial Institute of Agricultural Engineering, Łukasiewicz Research Network, 60-963 Poznan, PolandThis paper presents the results of experimental studies on two-phase conical swirl atomizers. The impact of various atomizer geometries and different operational parameters of the atomization process on the spray characteristics was investigated. The influence of the mixing chamber height <i>H<sub>S</sub></i> to diameter <i>D<sub>S</sub></i> ratio and the volumetric flow rates of liquid and gas on the discharge coefficient values, spray angle, droplet size expressed by Sauter mean diameter <i>D</i><sub>32</sub>, volumetric and radial distributions of droplet diameters in the spray stream were determined. The analysis of results showed that the discharge coefficient values depend on the Reynolds number for liquid and gas and the atomizer geometry. The spray angle increases as the flow rate of liquid and gas increases depending on the applied atomizer construction. The Sauter mean diameter value is correlated with the geometric dimensions of the atomizer swirl chamber. The rapid increase in <i>D</i><sub>32</sub> occurs after exceeding the value <i>H<sub>S</sub>/D<sub>S</sub> ≈</i> 3. The Sauter mean diameter also depends on the operating parameters. A central area of stream is filled with smaller sized droplets as the gas flow rate increases.https://www.mdpi.com/1996-1073/13/13/3416conical swirl atomizerconstruction of atomizeratomizationdroplet size distributionSauter mean diameterdischarge coefficient |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marek Ochowiak Andżelika Krupińska Sylwia Włodarczak Magdalena Matuszak Małgorzata Markowska Marcin Janczarek Tomasz Szulc |
spellingShingle |
Marek Ochowiak Andżelika Krupińska Sylwia Włodarczak Magdalena Matuszak Małgorzata Markowska Marcin Janczarek Tomasz Szulc The Two-Phase Conical Swirl Atomizers: Spray Characteristics Energies conical swirl atomizer construction of atomizer atomization droplet size distribution Sauter mean diameter discharge coefficient |
author_facet |
Marek Ochowiak Andżelika Krupińska Sylwia Włodarczak Magdalena Matuszak Małgorzata Markowska Marcin Janczarek Tomasz Szulc |
author_sort |
Marek Ochowiak |
title |
The Two-Phase Conical Swirl Atomizers: Spray Characteristics |
title_short |
The Two-Phase Conical Swirl Atomizers: Spray Characteristics |
title_full |
The Two-Phase Conical Swirl Atomizers: Spray Characteristics |
title_fullStr |
The Two-Phase Conical Swirl Atomizers: Spray Characteristics |
title_full_unstemmed |
The Two-Phase Conical Swirl Atomizers: Spray Characteristics |
title_sort |
two-phase conical swirl atomizers: spray characteristics |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2020-07-01 |
description |
This paper presents the results of experimental studies on two-phase conical swirl atomizers. The impact of various atomizer geometries and different operational parameters of the atomization process on the spray characteristics was investigated. The influence of the mixing chamber height <i>H<sub>S</sub></i> to diameter <i>D<sub>S</sub></i> ratio and the volumetric flow rates of liquid and gas on the discharge coefficient values, spray angle, droplet size expressed by Sauter mean diameter <i>D</i><sub>32</sub>, volumetric and radial distributions of droplet diameters in the spray stream were determined. The analysis of results showed that the discharge coefficient values depend on the Reynolds number for liquid and gas and the atomizer geometry. The spray angle increases as the flow rate of liquid and gas increases depending on the applied atomizer construction. The Sauter mean diameter value is correlated with the geometric dimensions of the atomizer swirl chamber. The rapid increase in <i>D</i><sub>32</sub> occurs after exceeding the value <i>H<sub>S</sub>/D<sub>S</sub> ≈</i> 3. The Sauter mean diameter also depends on the operating parameters. A central area of stream is filled with smaller sized droplets as the gas flow rate increases. |
topic |
conical swirl atomizer construction of atomizer atomization droplet size distribution Sauter mean diameter discharge coefficient |
url |
https://www.mdpi.com/1996-1073/13/13/3416 |
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