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On the flow topology of swirl jets upon impingement

On the flow topology of swirl jets upon impingement

来源:Arxiv_logoArxiv
英文摘要

Jet impingement enhances heat transfer and is characterised by the complex flow patterns formed when a jet impacts a plate aligned normal to it. While traditional round jet impingement has been extensively studied to understand flow and associated heat transfer, there is still room for research in investigating flow structures in swirl jet impingement. This paper focuses on the flow topology of swirl jets generated by a 45-degree vane swirler, impinging on a flat plate studied at dimensionless jet-plate distances (H/D=1-4) and Reynolds numbers (Re = 16600 and 23000). The flow structures, mean velocity components, and turbulence characteristics are presented using a 2D Particle Image Velocimetry (PIV) experiment at the front and top planes. Furthermore, results from the 3D numerical simulations are presented to support the results where the PIV study had experimental limitations. The effect of impingement distance or jet-plate distance on the mean flow properties and turbulence parameters is discussed. A Proper Orthogonal Decomposition (POD) analysis has been performed to understand the dominant coherent structures in different cases of impingement distance. We show that the turbulence parameters are more pronounced at smaller jet-plate distances $(H/D \leq 2)$, which could explain the enhanced heat transfer for these jets.

Premchand V. Chandra、Pradip Dutta

热力工程、热机

Premchand V. Chandra,Pradip Dutta.On the flow topology of swirl jets upon impingement[EB/OL].(2025-05-29)[2025-06-30].https://arxiv.org/abs/2505.23203.点此复制

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