THE EFFECT OF SURFACE TRIANGULAR ROUGHNESS INSPIRED BY NATURE WITH DIFFERENT ANGLES ON THE INTERACTION BETWEEN FREE CONVECTION AND SURFACE RADIATION IN A SQUARE CAVITY
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Published:2024
Issue:5
Volume:55
Page:1-21
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ISSN:1064-2285
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Container-title:Heat Transfer Research
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language:en
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Short-container-title:Heat Trans Res
Author:
Omle Issa,Kovács Endre,Bolló Betti
Abstract
This paper focused on finding ways to reduce the amount of heat that escapes through surfaces by using rough
walls inspired by the design of silver ant's hair with triangular geometry and researching the impact of triangular
roughness with changing angles on the internal thermal environment of the cavity. The thermal performance
of square cavities is studied with isolated horizontal walls (upper and lower), where the left wall has a higher
temperature than the right wall. The convection and radiation heat transfer in these cavities are simulated using
ANSYS Fluent program. The length and height of the square cavities have four dimensions, implying four different
Rayleigh numbers. The Nusselt number inside these cavities is determined when the right surface is smooth and
rough, with a triangular shape roughness, in addition to studying the impact of the Rayleigh number, which
is influenced by the fluid properties and the applied temperatures. According to the results, surface roughness
significantly affects the thermodynamic and hydrodynamic behavior of the fluid inside the cavity, with the Nusselt
number becoming low with the triangular roughness and the head angles being less than 85°. As a result, the total
heat transfer decrease by a maximum of 49.9%.
Subject
Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics
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