Matches in SemOpenAlex for { <https://semopenalex.org/work/W4386491555> ?p ?o ?g. }
- W4386491555 endingPage "124586" @default.
- W4386491555 startingPage "124586" @default.
- W4386491555 abstract "Spray cooling of hot substrates is a technology that can provide uniform and intense cooling of surfaces of complex geometry. It is applicable to a wide range of surface temperatures associated with different applications, from cryogenic cooling to steel quenching. The performance of spray cooling is determined by surface temperature, spray parameters such as drop diameter, impact velocity, number flux and the thermal properties of the liquid and substrate. These parameters also determine different regimes of drop wall interactions such as drop deposition, nucleate boiling, drop dancing, thermal atomization and film boiling with drop rebound. The present experimental and theoretical study focuses on the transitional boiling regime, which is currently the least studied regime due to its complexity. The residence time of a single drop is modelled, taking into account the development of a thermal boundary layer in the substrate, the expansion of the vapour phase due to boiling in the drop, and the percolation of the vapour channels on the substrate. Moreover, the model allows to predict the heat flux during spray cooling in the transitional boiling regime. The model agrees well with the experimentally measured heat flux of sprays with low number flux." @default.
- W4386491555 created "2023-09-07" @default.
- W4386491555 creator A5000055792 @default.
- W4386491555 creator A5041495413 @default.
- W4386491555 creator A5058034515 @default.
- W4386491555 creator A5072803596 @default.
- W4386491555 creator A5087295856 @default.
- W4386491555 date "2023-12-01" @default.
- W4386491555 modified "2023-10-02" @default.
- W4386491555 title "Modelling of drop and spray impact in the transitional boiling regime" @default.
- W4386491555 cites W1544073467 @default.
- W4386491555 cites W1963663384 @default.
- W4386491555 cites W1975511517 @default.
- W4386491555 cites W2003528270 @default.
- W4386491555 cites W2004807109 @default.
- W4386491555 cites W2015159674 @default.
- W4386491555 cites W2020908528 @default.
- W4386491555 cites W2027200102 @default.
- W4386491555 cites W2030827488 @default.
- W4386491555 cites W2033293469 @default.
- W4386491555 cites W2044700398 @default.
- W4386491555 cites W2051056018 @default.
- W4386491555 cites W2070065285 @default.
- W4386491555 cites W2074380111 @default.
- W4386491555 cites W2084322415 @default.
- W4386491555 cites W2091114066 @default.
- W4386491555 cites W2093534024 @default.
- W4386491555 cites W2112588978 @default.
- W4386491555 cites W2113997409 @default.
- W4386491555 cites W2119845238 @default.
- W4386491555 cites W2129310515 @default.
- W4386491555 cites W2138280038 @default.
- W4386491555 cites W2152848494 @default.
- W4386491555 cites W2161264820 @default.
- W4386491555 cites W2460500239 @default.
- W4386491555 cites W2471248305 @default.
- W4386491555 cites W2604750164 @default.
- W4386491555 cites W2615262040 @default.
- W4386491555 cites W2625455346 @default.
- W4386491555 cites W2633593533 @default.
- W4386491555 cites W2710991455 @default.
- W4386491555 cites W2731177294 @default.
- W4386491555 cites W2789341815 @default.
- W4386491555 cites W2792403842 @default.
- W4386491555 cites W2907860701 @default.
- W4386491555 cites W3046260756 @default.
- W4386491555 cites W3049582419 @default.
- W4386491555 cites W3097296551 @default.
- W4386491555 cites W3104315956 @default.
- W4386491555 cites W3106305870 @default.
- W4386491555 cites W3168009477 @default.
- W4386491555 cites W3182499710 @default.
- W4386491555 cites W3195821762 @default.
- W4386491555 cites W3200971926 @default.
- W4386491555 cites W4318754009 @default.
- W4386491555 cites W4324387479 @default.
- W4386491555 cites W610415248 @default.
- W4386491555 doi "https://doi.org/10.1016/j.ijheatmasstransfer.2023.124586" @default.
- W4386491555 hasPublicationYear "2023" @default.
- W4386491555 type Work @default.
- W4386491555 citedByCount "0" @default.
- W4386491555 crossrefType "journal-article" @default.
- W4386491555 hasAuthorship W4386491555A5000055792 @default.
- W4386491555 hasAuthorship W4386491555A5041495413 @default.
- W4386491555 hasAuthorship W4386491555A5058034515 @default.
- W4386491555 hasAuthorship W4386491555A5072803596 @default.
- W4386491555 hasAuthorship W4386491555A5087295856 @default.
- W4386491555 hasConcept C121332964 @default.
- W4386491555 hasConcept C127413603 @default.
- W4386491555 hasConcept C157777378 @default.
- W4386491555 hasConcept C159188206 @default.
- W4386491555 hasConcept C192562407 @default.
- W4386491555 hasConcept C197194406 @default.
- W4386491555 hasConcept C2781345722 @default.
- W4386491555 hasConcept C50517652 @default.
- W4386491555 hasConcept C57879066 @default.
- W4386491555 hasConcept C78519656 @default.
- W4386491555 hasConcept C81697391 @default.
- W4386491555 hasConcept C97355855 @default.
- W4386491555 hasConceptScore W4386491555C121332964 @default.
- W4386491555 hasConceptScore W4386491555C127413603 @default.
- W4386491555 hasConceptScore W4386491555C157777378 @default.
- W4386491555 hasConceptScore W4386491555C159188206 @default.
- W4386491555 hasConceptScore W4386491555C192562407 @default.
- W4386491555 hasConceptScore W4386491555C197194406 @default.
- W4386491555 hasConceptScore W4386491555C2781345722 @default.
- W4386491555 hasConceptScore W4386491555C50517652 @default.
- W4386491555 hasConceptScore W4386491555C57879066 @default.
- W4386491555 hasConceptScore W4386491555C78519656 @default.
- W4386491555 hasConceptScore W4386491555C81697391 @default.
- W4386491555 hasConceptScore W4386491555C97355855 @default.
- W4386491555 hasLocation W43864915551 @default.
- W4386491555 hasOpenAccess W4386491555 @default.
- W4386491555 hasPrimaryLocation W43864915551 @default.
- W4386491555 hasRelatedWork W1985320345 @default.
- W4386491555 hasRelatedWork W1987559178 @default.
- W4386491555 hasRelatedWork W2015037297 @default.
- W4386491555 hasRelatedWork W2051774644 @default.