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Development of Thermal Wall Functions through Direct Numerical Simulation

Ioana Gocea

Development of Thermal Wall Functions through Direct Numerical Simulation.

Rel. Gioacchino Cafiero, Sandra Pieraccini, Lilla Koloszár, Jure Oder. Politecnico di Torino, Corso di laurea magistrale in Ingegneria Aerospaziale, 2025

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Abstract:

This study performs a direct numerical simulation (DNS) of a turbulent boundary layer that develops spatially on a flat plate under a zero pressure gradient. The investigation focuses on the influence of Prandtl numbers on passive scalar transport. The Navier-Stokes equations and scalar transport equations are solved using a spectral element method (SEM). Various molecular Prandtl numbers are analyzed, mainly in the liquid metals range, to observe their impact on scalar behavior, particularly in the outer region of the boundary layer. The results reveal significant insights into the statistical behavior of scalars, highlighting differences in near-wall streak spacing and coherence between velocity and scalar fields based on Prandtl number variations. Probabilistic methods further identify intermittency near the wall and in the outer region, providing a comprehensive view of the scalar-field dynamics influenced by Prandtl numbers.

Relatori: Gioacchino Cafiero, Sandra Pieraccini, Lilla Koloszár, Jure Oder
Anno accademico: 2024/25
Tipo di pubblicazione: Elettronica
Numero di pagine: 115
Soggetti:
Corso di laurea: Corso di laurea magistrale in Ingegneria Aerospaziale
Classe di laurea: Nuovo ordinamento > Laurea magistrale > LM-20 - INGEGNERIA AEROSPAZIALE E ASTRONAUTICA
Aziende collaboratrici: Von Karman Institute for Fluid Dynamics
URI: http://webthesis.biblio.polito.it/id/eprint/35167
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