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Numerical Investigation on the Effect of Section Width on the Performance of Air Ejector with Rectangular Section

Due to its simple structure and lack of moving parts, the supersonic air ejector has been widely applied in the fields of machinery, aerospace, and energy-saving. The performance of the ejector is influenced by the flow channel structure and the velocity of the jet, thus the confined jet is an impor...

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Autores principales: Zhang, Ying, Dong, Jingming, Song, Shuaiyu, Pan, Xinxiang, He, Nan, Lu, Manfei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9857698/
https://www.ncbi.nlm.nih.gov/pubmed/36673320
http://dx.doi.org/10.3390/e25010179
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author Zhang, Ying
Dong, Jingming
Song, Shuaiyu
Pan, Xinxiang
He, Nan
Lu, Manfei
author_facet Zhang, Ying
Dong, Jingming
Song, Shuaiyu
Pan, Xinxiang
He, Nan
Lu, Manfei
author_sort Zhang, Ying
collection PubMed
description Due to its simple structure and lack of moving parts, the supersonic air ejector has been widely applied in the fields of machinery, aerospace, and energy-saving. The performance of the ejector is influenced by the flow channel structure and the velocity of the jet, thus the confined jet is an important limiting factor for the performance of the supersonic air ejector. In order to investigate the effect of the confined jet on the performance of the ejector, an air ejector with a rectangular section was designed. The effects of the section width (W(c)) on the entrainment ratio, velocity distribution, turbulent kinetic energy distribution, Mach number distribution, and vorticity distribution of the rectangular section air ejector were studied numerically. The numerical results indicated that the entrainment ratio of the rectangular section air ejector increased from 0.34 to 0.65 and the increment of the ER was 91.2% when the section width increased from 1 mm to 10 mm. As W(c) increased, the region of the turbulent kinetic energy gradually expanded. The energy exchange between the primary fluid and the secondary fluid was mainly in the form of turbulent diffusion in the mixing chamber. In addition to W(c) limiting the fluid flow in the rectangular section air ejector, the structure size of the rectangular section air ejector in the XOY plane also had a limiting effect on the internal fluid flow. In the rectangular section air ejector, the streamwise vortices played an important role in the mixing process. The increase of W(c) would increase the distribution of the streamwise vortices in the constant-area section. Meanwhile, the distribution of the spanwise vortices would gradually decrease.
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spelling pubmed-98576982023-01-21 Numerical Investigation on the Effect of Section Width on the Performance of Air Ejector with Rectangular Section Zhang, Ying Dong, Jingming Song, Shuaiyu Pan, Xinxiang He, Nan Lu, Manfei Entropy (Basel) Article Due to its simple structure and lack of moving parts, the supersonic air ejector has been widely applied in the fields of machinery, aerospace, and energy-saving. The performance of the ejector is influenced by the flow channel structure and the velocity of the jet, thus the confined jet is an important limiting factor for the performance of the supersonic air ejector. In order to investigate the effect of the confined jet on the performance of the ejector, an air ejector with a rectangular section was designed. The effects of the section width (W(c)) on the entrainment ratio, velocity distribution, turbulent kinetic energy distribution, Mach number distribution, and vorticity distribution of the rectangular section air ejector were studied numerically. The numerical results indicated that the entrainment ratio of the rectangular section air ejector increased from 0.34 to 0.65 and the increment of the ER was 91.2% when the section width increased from 1 mm to 10 mm. As W(c) increased, the region of the turbulent kinetic energy gradually expanded. The energy exchange between the primary fluid and the secondary fluid was mainly in the form of turbulent diffusion in the mixing chamber. In addition to W(c) limiting the fluid flow in the rectangular section air ejector, the structure size of the rectangular section air ejector in the XOY plane also had a limiting effect on the internal fluid flow. In the rectangular section air ejector, the streamwise vortices played an important role in the mixing process. The increase of W(c) would increase the distribution of the streamwise vortices in the constant-area section. Meanwhile, the distribution of the spanwise vortices would gradually decrease. MDPI 2023-01-16 /pmc/articles/PMC9857698/ /pubmed/36673320 http://dx.doi.org/10.3390/e25010179 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhang, Ying
Dong, Jingming
Song, Shuaiyu
Pan, Xinxiang
He, Nan
Lu, Manfei
Numerical Investigation on the Effect of Section Width on the Performance of Air Ejector with Rectangular Section
title Numerical Investigation on the Effect of Section Width on the Performance of Air Ejector with Rectangular Section
title_full Numerical Investigation on the Effect of Section Width on the Performance of Air Ejector with Rectangular Section
title_fullStr Numerical Investigation on the Effect of Section Width on the Performance of Air Ejector with Rectangular Section
title_full_unstemmed Numerical Investigation on the Effect of Section Width on the Performance of Air Ejector with Rectangular Section
title_short Numerical Investigation on the Effect of Section Width on the Performance of Air Ejector with Rectangular Section
title_sort numerical investigation on the effect of section width on the performance of air ejector with rectangular section
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9857698/
https://www.ncbi.nlm.nih.gov/pubmed/36673320
http://dx.doi.org/10.3390/e25010179
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