Matches in SemOpenAlex for { <https://semopenalex.org/work/W4310909024> ?p ?o ?g. }
Showing items 1 to 87 of
87
with 100 items per page.
- W4310909024 endingPage "123688" @default.
- W4310909024 startingPage "123688" @default.
- W4310909024 abstract "For gas flow over a flat plate, the temperature recovery factor is defined as a fraction of free-stream total temperature rise recovered at the wall or is the ratio of the actual temperature rise at the wall to the maximum possible temperature rise in the free-stream. Its value depends on Prandtl number and is independent of Mach number. The gas velocity and temperature are determined by the temperature recovery factor using the adiabatic wall temperature. It is an important parameter to be used to evaluate the gas velocity and temperature indirectly. In the present study, for internal flow, a methodology was introduced to estimate the temperature recovery factor numerically based on the total and bulk temperature for both laminar and turbulent flow regions in a microtube. The numerical simulations are based on the arbitrary Lagrangian-Eulerian method. The compressible momentum and energy equations for an ideal gas were solved to obtain the temperature recovery factor. To further validate the temperature recovery factor from numerical results, experiments were conducted using stainless steel microtubes. Although it is not a direct comparison, the gas bulk temperature and Mach number that were determined by the temperature recovery factor were compared with the experimental results and they were in good agreement." @default.
- W4310909024 created "2022-12-20" @default.
- W4310909024 creator A5013320266 @default.
- W4310909024 creator A5025324120 @default.
- W4310909024 creator A5032536650 @default.
- W4310909024 creator A5055978230 @default.
- W4310909024 date "2023-03-01" @default.
- W4310909024 modified "2023-10-18" @default.
- W4310909024 title "Temperature recovery factor for gaseous nitrogen flow in a microtube" @default.
- W4310909024 cites W2005265948 @default.
- W4310909024 cites W2015303872 @default.
- W4310909024 cites W2033303078 @default.
- W4310909024 cites W2078244652 @default.
- W4310909024 cites W2080434743 @default.
- W4310909024 cites W2109409161 @default.
- W4310909024 cites W2129824613 @default.
- W4310909024 cites W2285828097 @default.
- W4310909024 cites W2327413633 @default.
- W4310909024 cites W2781753942 @default.
- W4310909024 cites W3008730502 @default.
- W4310909024 cites W3011214281 @default.
- W4310909024 cites W3039832657 @default.
- W4310909024 cites W3169829922 @default.
- W4310909024 cites W4362038799 @default.
- W4310909024 cites W3140394356 @default.
- W4310909024 doi "https://doi.org/10.1016/j.ijheatmasstransfer.2022.123688" @default.
- W4310909024 hasPublicationYear "2023" @default.
- W4310909024 type Work @default.
- W4310909024 citedByCount "0" @default.
- W4310909024 crossrefType "journal-article" @default.
- W4310909024 hasAuthorship W4310909024A5013320266 @default.
- W4310909024 hasAuthorship W4310909024A5025324120 @default.
- W4310909024 hasAuthorship W4310909024A5032536650 @default.
- W4310909024 hasAuthorship W4310909024A5055978230 @default.
- W4310909024 hasConcept C10138342 @default.
- W4310909024 hasConcept C109663097 @default.
- W4310909024 hasConcept C121332964 @default.
- W4310909024 hasConcept C162324750 @default.
- W4310909024 hasConcept C165231844 @default.
- W4310909024 hasConcept C192562407 @default.
- W4310909024 hasConcept C196558001 @default.
- W4310909024 hasConcept C38349280 @default.
- W4310909024 hasConcept C46634527 @default.
- W4310909024 hasConcept C50517652 @default.
- W4310909024 hasConcept C57879066 @default.
- W4310909024 hasConcept C60718061 @default.
- W4310909024 hasConcept C72687893 @default.
- W4310909024 hasConcept C76563973 @default.
- W4310909024 hasConcept C8244237 @default.
- W4310909024 hasConcept C84655787 @default.
- W4310909024 hasConcept C97355855 @default.
- W4310909024 hasConceptScore W4310909024C10138342 @default.
- W4310909024 hasConceptScore W4310909024C109663097 @default.
- W4310909024 hasConceptScore W4310909024C121332964 @default.
- W4310909024 hasConceptScore W4310909024C162324750 @default.
- W4310909024 hasConceptScore W4310909024C165231844 @default.
- W4310909024 hasConceptScore W4310909024C192562407 @default.
- W4310909024 hasConceptScore W4310909024C196558001 @default.
- W4310909024 hasConceptScore W4310909024C38349280 @default.
- W4310909024 hasConceptScore W4310909024C46634527 @default.
- W4310909024 hasConceptScore W4310909024C50517652 @default.
- W4310909024 hasConceptScore W4310909024C57879066 @default.
- W4310909024 hasConceptScore W4310909024C60718061 @default.
- W4310909024 hasConceptScore W4310909024C72687893 @default.
- W4310909024 hasConceptScore W4310909024C76563973 @default.
- W4310909024 hasConceptScore W4310909024C8244237 @default.
- W4310909024 hasConceptScore W4310909024C84655787 @default.
- W4310909024 hasConceptScore W4310909024C97355855 @default.
- W4310909024 hasLocation W43109090241 @default.
- W4310909024 hasOpenAccess W4310909024 @default.
- W4310909024 hasPrimaryLocation W43109090241 @default.
- W4310909024 hasRelatedWork W1965145670 @default.
- W4310909024 hasRelatedWork W2008399027 @default.
- W4310909024 hasRelatedWork W2028123486 @default.
- W4310909024 hasRelatedWork W2085603903 @default.
- W4310909024 hasRelatedWork W2111074972 @default.
- W4310909024 hasRelatedWork W2148202775 @default.
- W4310909024 hasRelatedWork W2392097915 @default.
- W4310909024 hasRelatedWork W3042948819 @default.
- W4310909024 hasRelatedWork W4289780684 @default.
- W4310909024 hasRelatedWork W2182726697 @default.
- W4310909024 hasVolume "202" @default.
- W4310909024 isParatext "false" @default.
- W4310909024 isRetracted "false" @default.
- W4310909024 workType "article" @default.