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Title: Transition of the thermal boundary layer and plume over an isothermal section-triangular roof : an experimental study
Authors: Zhai, H 
Torres, JF
Zhao, Y
Xu, F
Issue Date: Nov-2024
Source: Journal of fluid mechanics, 10 Nov. 2024, v. 998, A7
Abstract: The development of thermal boundary layers and plume near a section-Triangular roof under different isothermal heating conditions has been the focus of numerous numerical studies. However, flow transition in this type of flow has never been observed experimentally. Here, phase-shifting interferometry and thermistor measurements are employed to experimentally observe and quantify the flow transitions in a buoyancy-driven flow over an isothermal section-Triangular roof. Visualisation of temperature contours is conducted across a wide range of Rayleigh numbers from laminar at 103 to chaotic state at 4 × 106. Power spectral density of the temperature measurements reveals the type of bifurcations developing as the Rayleigh number is increased. This flow transition is characterised as a complex bifurcation route with the presence of two fundamental frequencies, a low and a high frequency. We found that the thermal stratification in the environment plays a significant role in the flow transition. The spatial development of flow is also quantitatively and qualitatively described. In addition to clarifying flow transition in experiments, the work demonstrates the implementation of phase-shifting interferometry and punctual temperature measurements for characterisation of near-field flow over a heated surface.
Keywords: Boundary layer stability
Buoyancy-driven instability
Plumes/thermals
Publisher: Cambridge University Press
Journal: Journal of fluid mechanics 
ISSN: 0022-1120
EISSN: 1469-7645
DOI: 10.1017/jfm.2024.789
Rights: This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence (http://creativecommons.org/licenses/by/4.0), which permits unrestricted re-use, distribution and reproduction, provided the original article is properly cited.
© The Author(s), 2024. Published by Cambridge University Press.
The following publication is available at https://dx.doi.org/10.1109/JSTARS.2024.3502461.
Appears in Collections:Journal/Magazine Article

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