Enhanced VOF- based direct numerical simulations of slug flow boiling within micro-channels with smooth and finned heated walls

E. Teodori, Manolia Andredaki, Anastasios Georgoulas, Ana Moita, Antonio Moreira, Marco Marengo

Research output: Chapter in Book/Conference proceeding with ISSN or ISBNConference contribution with ISSN or ISBNResearchpeer-review

Original languageEnglish
Title of host publicationProceedings of the International Heat Transfer Conference 16
PublisherBegell House
Pages6503-6510
Volume18
DOIs
Publication statusPublished - 2018
EventThe 16th International Heat Transfer Conference: IHTC-16 - China National Convention Center, Beijing, China
Duration: 10 Aug 201815 Aug 2018
http://www.ihtc16.org

Publication series

NameInternational Heat Transfer Conference 16
PublisherBegell House
ISSN (Electronic)2377-424X

Conference

ConferenceThe 16th International Heat Transfer Conference
CountryChina
CityBeijing
Period10/08/1815/08/18
Internet address

Keywords

  • Two-phase/Multiphase flow
  • Boiling and evaporation
  • OpneFOAM
  • Interface tracking

Cite this

Teodori, E., Andredaki, M., Georgoulas, A., Moita, A., Moreira, A., & Marengo, M. (2018). Enhanced VOF- based direct numerical simulations of slug flow boiling within micro-channels with smooth and finned heated walls. In Proceedings of the International Heat Transfer Conference 16 (Vol. 18, pp. 6503-6510). [IHTC16-23596] (International Heat Transfer Conference 16). Begell House. https://doi.org/10.1615/IHTC16.mpf.023596
Teodori, E. ; Andredaki, Manolia ; Georgoulas, Anastasios ; Moita, Ana ; Moreira, Antonio ; Marengo, Marco. / Enhanced VOF- based direct numerical simulations of slug flow boiling within micro-channels with smooth and finned heated walls. Proceedings of the International Heat Transfer Conference 16. Vol. 18 Begell House, 2018. pp. 6503-6510 (International Heat Transfer Conference 16).
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title = "Enhanced VOF- based direct numerical simulations of slug flow boiling within micro-channels with smooth and finned heated walls",
keywords = "Two-phase/Multiphase flow, Boiling and evaporation, OpneFOAM, Interface tracking",
author = "E. Teodori and Manolia Andredaki and Anastasios Georgoulas and Ana Moita and Antonio Moreira and Marco Marengo",
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Teodori, E, Andredaki, M, Georgoulas, A, Moita, A, Moreira, A & Marengo, M 2018, Enhanced VOF- based direct numerical simulations of slug flow boiling within micro-channels with smooth and finned heated walls. in Proceedings of the International Heat Transfer Conference 16. vol. 18, IHTC16-23596, International Heat Transfer Conference 16, Begell House, pp. 6503-6510, The 16th International Heat Transfer Conference, Beijing, China, 10/08/18. https://doi.org/10.1615/IHTC16.mpf.023596

Enhanced VOF- based direct numerical simulations of slug flow boiling within micro-channels with smooth and finned heated walls. / Teodori, E.; Andredaki, Manolia; Georgoulas, Anastasios; Moita, Ana; Moreira, Antonio; Marengo, Marco.

Proceedings of the International Heat Transfer Conference 16. Vol. 18 Begell House, 2018. p. 6503-6510 IHTC16-23596 (International Heat Transfer Conference 16).

Research output: Chapter in Book/Conference proceeding with ISSN or ISBNConference contribution with ISSN or ISBNResearchpeer-review

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T1 - Enhanced VOF- based direct numerical simulations of slug flow boiling within micro-channels with smooth and finned heated walls

AU - Teodori, E.

AU - Andredaki, Manolia

AU - Georgoulas, Anastasios

AU - Moita, Ana

AU - Moreira, Antonio

AU - Marengo, Marco

PY - 2018

Y1 - 2018

KW - Two-phase/Multiphase flow

KW - Boiling and evaporation

KW - OpneFOAM

KW - Interface tracking

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U2 - 10.1615/IHTC16.mpf.023596

DO - 10.1615/IHTC16.mpf.023596

M3 - Conference contribution with ISSN or ISBN

VL - 18

T3 - International Heat Transfer Conference 16

SP - 6503

EP - 6510

BT - Proceedings of the International Heat Transfer Conference 16

PB - Begell House

ER -

Teodori E, Andredaki M, Georgoulas A, Moita A, Moreira A, Marengo M. Enhanced VOF- based direct numerical simulations of slug flow boiling within micro-channels with smooth and finned heated walls. In Proceedings of the International Heat Transfer Conference 16. Vol. 18. Begell House. 2018. p. 6503-6510. IHTC16-23596. (International Heat Transfer Conference 16). https://doi.org/10.1615/IHTC16.mpf.023596