Flow characteristics of two dimensional classical and pulsating jet in crossflow at low Reynolds number

Numerical cases are studied for the behaviors of two dimensional classical and pulsating jet in crossflow (JICF) with Reynolds number 100. The corresponding flow characteristics of two dimensional JICF are presented by k-ε model in this paper in the range of velocity ratio r 1 ≤ r ≤ 4. Flow characte...

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Main Authors: Jianlong Chang, Xudong Shao, Jiangman Li
Format: Article
Language:English
Published: Elsevier 2018-09-01
Series:Case Studies in Thermal Engineering
Online Access:http://www.sciencedirect.com/science/article/pii/S2214157X18302077
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spelling doaj-0e308dcc7265440a83113fc5f176ddb42020-11-25T00:47:50ZengElsevierCase Studies in Thermal Engineering2214-157X2018-09-0112655665Flow characteristics of two dimensional classical and pulsating jet in crossflow at low Reynolds numberJianlong Chang0Xudong Shao1Jiangman Li2College of Mechatronic Engineering, North University of China, Taiyuan, China; Corresponding author.Beijing Institute of Space Systems Engineering, Beijing, ChinaState Power Investment Corporation Shanxi New Energy Co., LTD., ChinaNumerical cases are studied for the behaviors of two dimensional classical and pulsating jet in crossflow (JICF) with Reynolds number 100. The corresponding flow characteristics of two dimensional JICF are presented by k-ε model in this paper in the range of velocity ratio r 1 ≤ r ≤ 4. Flow characteristics of vortex structure for two dimensional classical JICF have been analyzed first. The investigated vorticity field shows that the JICF falls into the turbulent flow with the increasing velocity ratio quickly. A vortex action is formed in the leeward side. The streamline field for the classical JICF have been obtained computationally and analyzed. The analysis of two dimensional pulsating JICF assumes the vorticity field at various velocity ratios, in which the ejected jet is enclosed by the fixed Strouhal number. The following analysis assumes the stream fields based on the same cases of the analyzed vorticity field. Vortex action area is also existing in the two dimensional pulsating JICF. Finally, the contrast of pulsating JICF with different Strouhal numbers have been obtained computationally and analyzed in detail to reveal the differences and connections between the pulsating JICF with different Strouhal numbers. Keywords: Jet in crossflow, Low Reynolds number, k-ε model, Vortexhttp://www.sciencedirect.com/science/article/pii/S2214157X18302077
collection DOAJ
language English
format Article
sources DOAJ
author Jianlong Chang
Xudong Shao
Jiangman Li
spellingShingle Jianlong Chang
Xudong Shao
Jiangman Li
Flow characteristics of two dimensional classical and pulsating jet in crossflow at low Reynolds number
Case Studies in Thermal Engineering
author_facet Jianlong Chang
Xudong Shao
Jiangman Li
author_sort Jianlong Chang
title Flow characteristics of two dimensional classical and pulsating jet in crossflow at low Reynolds number
title_short Flow characteristics of two dimensional classical and pulsating jet in crossflow at low Reynolds number
title_full Flow characteristics of two dimensional classical and pulsating jet in crossflow at low Reynolds number
title_fullStr Flow characteristics of two dimensional classical and pulsating jet in crossflow at low Reynolds number
title_full_unstemmed Flow characteristics of two dimensional classical and pulsating jet in crossflow at low Reynolds number
title_sort flow characteristics of two dimensional classical and pulsating jet in crossflow at low reynolds number
publisher Elsevier
series Case Studies in Thermal Engineering
issn 2214-157X
publishDate 2018-09-01
description Numerical cases are studied for the behaviors of two dimensional classical and pulsating jet in crossflow (JICF) with Reynolds number 100. The corresponding flow characteristics of two dimensional JICF are presented by k-ε model in this paper in the range of velocity ratio r 1 ≤ r ≤ 4. Flow characteristics of vortex structure for two dimensional classical JICF have been analyzed first. The investigated vorticity field shows that the JICF falls into the turbulent flow with the increasing velocity ratio quickly. A vortex action is formed in the leeward side. The streamline field for the classical JICF have been obtained computationally and analyzed. The analysis of two dimensional pulsating JICF assumes the vorticity field at various velocity ratios, in which the ejected jet is enclosed by the fixed Strouhal number. The following analysis assumes the stream fields based on the same cases of the analyzed vorticity field. Vortex action area is also existing in the two dimensional pulsating JICF. Finally, the contrast of pulsating JICF with different Strouhal numbers have been obtained computationally and analyzed in detail to reveal the differences and connections between the pulsating JICF with different Strouhal numbers. Keywords: Jet in crossflow, Low Reynolds number, k-ε model, Vortex
url http://www.sciencedirect.com/science/article/pii/S2214157X18302077
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AT xudongshao flowcharacteristicsoftwodimensionalclassicalandpulsatingjetincrossflowatlowreynoldsnumber
AT jiangmanli flowcharacteristicsoftwodimensionalclassicalandpulsatingjetincrossflowatlowreynoldsnumber
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