Numerical Analysis of Cavitating Flow on Hydrofoil

Numerical study is presented in this work for turbulent cavitating flow pattern simulation on a hydrofoil, using state equation of cavitation model along with combined turbulence model for mixed fluid based on commercial software FLUENT 6.0. This solver is based on finite volume method. Cavitatin...

Täydet tiedot

Tallennettuna:
Bibliografiset tiedot
Päätekijät: Nur-E-Mostafa, Md, Morshed Alam, Eare Md, Monir Uddin, Mohammad
Aineistotyyppi: Artikkeli
Kieli:englanti
Julkaistu: Research and Development Wing, MIST 2023
Aiheet:
Linkit:http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/746
Tagit: Lisää tagi
Ei tageja, Lisää ensimmäinen tagi!
_version_ 1868227058034802688
author Nur-E-Mostafa, Md
Morshed Alam, Eare Md
Monir Uddin, Mohammad
author_browse Monir Uddin, Mohammad
Morshed Alam, Eare Md
Nur-E-Mostafa, Md
author_facet Nur-E-Mostafa, Md
Morshed Alam, Eare Md
Monir Uddin, Mohammad
author_sort Nur-E-Mostafa, Md
collection DSpace
description Numerical study is presented in this work for turbulent cavitating flow pattern simulation on a hydrofoil, using state equation of cavitation model along with combined turbulence model for mixed fluid based on commercial software FLUENT 6.0. This solver is based on finite volume method. Cavitating study yield irregular behavior with the variation of cavitation values (𝜎� This study is focused on pressure variation, vapor volume fraction, lift and drag forces on the foil section for various cavitation values at 7° angle of attack. Cavitation initiation begins at the foremost surface and covers towards the end chord with reducing cavitation value. Moreover, the change of vapor region pattern is predicted towards the front of the foil. Finally, transitional flow range is observed for � 𝜎lues 0.8 to 1.2 with large standard deviation.
format Article
id oai:localhost:123456789-746
institution My University
language English
publishDate 2023
publishDateRange 2023
publishDateSort 2023
publisher Research and Development Wing, MIST
publisherStr Research and Development Wing, MIST
record_format dspace
spelling oai:localhost:123456789-7462023-01-22T06:07:33Z Numerical Analysis of Cavitating Flow on Hydrofoil Nur-E-Mostafa, Md Morshed Alam, Eare Md Monir Uddin, Mohammad Cavitation value, Mixure model, RNG k-ε turbulence model, Irregular flow Numerical study is presented in this work for turbulent cavitating flow pattern simulation on a hydrofoil, using state equation of cavitation model along with combined turbulence model for mixed fluid based on commercial software FLUENT 6.0. This solver is based on finite volume method. Cavitating study yield irregular behavior with the variation of cavitation values (𝜎� This study is focused on pressure variation, vapor volume fraction, lift and drag forces on the foil section for various cavitation values at 7° angle of attack. Cavitation initiation begins at the foremost surface and covers towards the end chord with reducing cavitation value. Moreover, the change of vapor region pattern is predicted towards the front of the foil. Finally, transitional flow range is observed for � 𝜎lues 0.8 to 1.2 with large standard deviation. 2023-01-22T06:07:31Z 2023-01-22T06:07:31Z 2022-12 Article 2224-2007 http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/746 en application/pdf Research and Development Wing, MIST
spellingShingle Cavitation value, Mixure model, RNG k-ε turbulence model, Irregular flow
Nur-E-Mostafa, Md
Morshed Alam, Eare Md
Monir Uddin, Mohammad
Numerical Analysis of Cavitating Flow on Hydrofoil
title Numerical Analysis of Cavitating Flow on Hydrofoil
title_full Numerical Analysis of Cavitating Flow on Hydrofoil
title_fullStr Numerical Analysis of Cavitating Flow on Hydrofoil
title_full_unstemmed Numerical Analysis of Cavitating Flow on Hydrofoil
title_short Numerical Analysis of Cavitating Flow on Hydrofoil
title_sort numerical analysis of cavitating flow on hydrofoil
topic Cavitation value, Mixure model, RNG k-ε turbulence model, Irregular flow
url http://dspace.mist.ac.bd:8080/xmlui/handle/123456789/746
work_keys_str_mv AT nuremostafamd numericalanalysisofcavitatingflowonhydrofoil
AT morshedalamearemd numericalanalysisofcavitatingflowonhydrofoil
AT moniruddinmohammad numericalanalysisofcavitatingflowonhydrofoil