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Modal heat transfer dynamics during flow boiling of dielectric fluids on laser-textured conical microcavities
ID
Fontanarosa, Donato
(
Avtor
),
ID
Vodopivec, Matevž
(
Avtor
),
ID
Castagne, Sylvie
(
Avtor
),
ID
Zupančič, Matevž
(
Avtor
),
ID
Vetrano, Maria Rosaria
(
Avtor
)
PDF - Predstavitvena datoteka,
prenos
(2,20 MB)
MD5: 9D45538E9DC5C12F5B9C7BFBFF8935A7
URL - Izvorni URL, za dostop obiščite
https://www.sciencedirect.com/science/article/pii/S1359431126021307
Galerija slik
Izvleček
The present work investigates flow boiling heat transfer enhancement on functionalised surfaces featuring arrays of femtosecond-laser-textured microcavities manufactured on 100 µm thick stainless steel foils. The influence of cavity aspect ratio and cavity pitch is examined using a novel diagnostic approach that integrates high-speed infrared thermography of transient surface temperature fields with high-speed video imaging of the boiling process. A global analysis of heat transfer performance is followed by an analysis of the heat transfer dynamics via multiscale Proper Orthogonal Decomposition. The test matrix includes three cavity pitches (100 µm, 200 µm and 500 µm), two aspect ratios (2.5 and 7.5) and two channel orientations (i.e., horizontal and vertical). Global results show that, in horizontal orientation and high-aspect-ratio cavities, the 100 µm pitch yields the lowest wall superheat and highest heat transfer coefficient, while in the vertical channel, the best performance is achieved with 200 µm pitch cavities. The dynamic analysis reveals that enhancement arises from heat transfer dynamics occurring at smaller spatial scales and higher spatial densities, while not necessarily at higher frequencies. On the best-performing surfaces, the dominant frequencies are found to be low, as densely distributed vapour clusters from multiple smaller bubbles travel across the surface at a slower rate. Moreover, the observed performance of 200 µm pitch cavities in the vertical channel indicates that, in vertical upward flow, larger pitches are more effective under the combined influence of geometry and gravity. Together, the results offer design guidelines for optimising micro-textured surfaces for specific flow orientations and operating conditions.
Jezik:
Angleški jezik
Ključne besede:
artificial nucleation sites
,
conical cavities
,
flow boiling
,
femtosecond laser texturing
,
heat transfer dynamics
Vrsta gradiva:
Članek v reviji
Tipologija:
1.01 - Izvirni znanstveni članek
Organizacija:
FS - Fakulteta za strojništvo
Status publikacije:
Objavljeno
Različica publikacije:
Recenzirani rokopis
Leto izida:
2026
Št. strani:
1-15 str.
Številčenje:
Vol. 302, Part 2, art. 131822
PID:
20.500.12556/RUL-184171
UDK:
536.2:66.046.7:535
ISSN pri članku:
1873-5606
DOI:
10.1016/j.applthermaleng.2026.131822
COBISS.SI-ID:
282908419
Datum objave v RUL:
01.07.2026
Število ogledov:
114
Število prenosov:
100
Metapodatki:
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Objavi na:
Gradivo je del revije
Naslov:
Applied thermal engineering
Založnik:
Elsevier
ISSN:
1873-5606
COBISS.SI-ID:
23195397
Licence
Licenca:
CC BY-NC-ND 4.0, Creative Commons Priznanje avtorstva-Nekomercialno-Brez predelav 4.0 Mednarodna
Povezava:
http://creativecommons.org/licenses/by-nc-nd/4.0/deed.sl
Opis:
Najbolj omejujoča licenca Creative Commons. Uporabniki lahko prenesejo in delijo delo v nekomercialne namene in ga ne smejo uporabiti za nobene druge namene.
Sekundarni jezik
Jezik:
Slovenski jezik
Ključne besede:
nukleacijska mesta
,
konične jamice
,
prisilno konvektivno vrenje
,
strukturiranje s femtosekundnim laserjem
,
dinamika prenosa toplote
Projekti
Financer:
Drugi - Drug financer ali več financerjev
Program financ.:
Research Foundation - Flanders
Številka projekta:
G066722N
Naslov:
FWO Weave project BEST
Financer:
Drugi - Drug financer ali več financerjev
Program financ.:
Research Foundation - Flanders
Številka projekta:
I001120N
Naslov:
FWO Medium Scale Infrastructure FemtoFac
Financer:
EC - European Commission
Številka projekta:
101111273
Naslov:
A new strategy for chilldown enhancement in cryogenic propulsion systems
Akronim:
INCEPT
Financer:
ARIS - Javna agencija za znanstvenoraziskovalno in inovacijsko dejavnost Republike Slovenije
Številka projekta:
P2-0223-2022
Naslov:
Prenos toplote in snovi
Financer:
ARIS - Javna agencija za znanstvenoraziskovalno in inovacijsko dejavnost Republike Slovenije
Številka projekta:
J2-50085-2023
Naslov:
Raziskave medfaznih pojavov kapljic in mehurčkov na funkcionaliziranih površinah ob uporabi napredne diagnostike za razvoj okoljskih tehnologij prihodnosti in izboljšanega prenosa toplote (DroBFuSE)
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