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Laminar Heat Transfer Enhancement in a Rectangular Channel Using Rectangular Wing Vortex Generators with Triangular Tips: 3D Numerical Analysis

delete2026-05-12
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PRE
AI
A
Assadour Khanjian *
R
Resen, Ibrahim S.
A
Ali Al Shaer
E
Ezzeddine, Youssef
A
Awada, Mahdi
A
Ahmed Mohsin Alsayah
J
Jalal Faraj
M
Mahmoud Khaled *
DOI:10.3390/thermo6020034delete
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Abstract

Abstract

En 中文
Creating secondary flows that encourage fluid interchange between hot and cold regions is frequently necessary to improve convective heat transfer in compact channels. A well-known passive method for enhancing mixing and boosting thermal performance in laminar regimes is the use of vortex generators (VGs), which create streamwise and transverse vortices. Laminar forced convection in a rectangular channel with rectangular wing vortex generators with triangular tips is investigated numerically in this work. The primary goal is to assess the impact of the number of tips per wing on pressure drop and heat transfer enhancement at a fixed angle of attack (alpha). This study examines a single row of rectangular wing vortex generators (VGs) with triangular tips and systematically evaluates how variations in tip number influence not only the global Nusselt number and friction factor but also the three-dimensional vortex structure distribution along the channel. This approach contrasts with many previous studies that primarily focus on global performance indices or on classical delta-type VGs. ANSYS Fluent's finite volume method is used to solve three-dimensional stable, laminar, incompressible flow and heat transfer. Two Reynolds numbers, Re = 456 and Re = 911, are simulated for different triangular-tip configurations at a fixed angle of attack of alpha = 30 degrees. To connect flow structures to heat transfer behavior, area-averaged Nusselt numbers and friction factors are calculated for each case, and vortex cores and their spatial locations are examined. The findings demonstrate that heat transfer improvement is directly and significantly impacted by the VG tip arrangement. The trade-off between heat gains and pressure losses is highlighted by the fact that some tip configurations produce stronger, more persistent vortices and higher Nusselt numbers at the expense of an increased friction factor. The conclusions are limited to laminar flow conditions at alpha = 30 degrees, Reynolds numbers of 456 and 911, and the investigated one-, two-, and three-tip configurations.
Keywords:
vortex generators
laminar forced convection
rectangular channel
triangular-tip wings
heat transfer enhancement
Nusselt number and friction factor

Journal

T
Thermo
IF:
2.3
Papers:
54
Citations:
217

Organization

S
saint joseph university beirut
Scholars:
623
Papers: 321
Citations: 0
G
gulf university for science & technology (gust)
Scholars:
400
Papers: 501
Citations: 0