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Liang-Bi Wang

Researcher at Lanzhou Jiaotong University

Publications -  102
Citations -  2029

Liang-Bi Wang is an academic researcher from Lanzhou Jiaotong University. The author has contributed to research in topics: Heat transfer & Nusselt number. The author has an hindex of 23, co-authored 93 publications receiving 1549 citations. Previous affiliations of Liang-Bi Wang include Xi'an Jiaotong University.

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Effect of geometric size of curved delta winglet vortex generators and tube pitch on heat transfer characteristics of fin-tube heat exchanger

TL;DR: In order to further improve the heat transfer performance of compact heat exchanger, curved delta winglet vortex generators with different geometric sizes are experimentally studied for circular tube-and-fin this paper.
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Heat transfer characteristics of a circular tube bank fin heat exchanger with fins punched curve rectangular vortex generators in the wake regions of the tubes

TL;DR: In this paper, a new type of fin is reported, on which curve rectangular vortex generators (CRVGs) are punched, and a numerical method is used to investigate the fluid flow and heat transfer characteristics of the fin.
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Numerical study of the relationship between heat transfer enhancement and absolute vorticity flux along main flow direction in a channel formed by a flat tube bank fin with vortex generators

TL;DR: In this paper, the cross-averaged absolute vorticity flux in the main flow direction is used to specify the intensity of the secondary flow produced by vortex generators that are mounted on a three-row flat tube bank fin surfaces.
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Experimental study of developing turbulent flow and heat transfer in ribbed convergent/divergent square ducts

TL;DR: In this article, the local heat transfer and pressure drop characteristics of developing turbulent flows of air in three stationary ribbed square ducts have been investigated experimentally, and the results show that the divergent duct has the highest heat transfer performance, while the convergent has the lowest.
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The Effectiveness of Secondary Flow Produced by Vortex Generators Mounted on Both Surfaces of the Fin to Enhance Heat Transfer in a Flat Tube Bank Fin Heat Exchanger

TL;DR: In this article, a flat tube bank fin heat exchanger with vortex generators (VGs) mounted on both surfaces of the fin was investigated for the enhancements of secondary flow intensity, convective heat transfer, and pressure drop.