Matches in SemOpenAlex for { <https://semopenalex.org/work/W2081367536> ?p ?o ?g. }
- W2081367536 endingPage "204" @default.
- W2081367536 startingPage "186" @default.
- W2081367536 abstract "An experimental study was performed to measure the full-field Nusselt number (Nu) distributions over two opposite leading and trailing ribbed walls, the pressure drop coefficients (f) and the overall thermal performance factors (TPF) of a rotating parallelogram channel with radially outward flow. The test conditions in terms of Reynolds (Re), rotation (Ro) and buoyancy (Bu) numbers were respectively in the ranges of 5000 ≤ Re ≤ 15,000, 0 ≤ Ro ≤ 0.3 and 0.001 ≤ Bu ≤ 0.23. The full-field Nu data generated by the infrared thermography method were examined to study the isolated and interdependent Re, Ro and Bu impacts on the detailed Nu distributions as well as on the rib-wise averaged Nusselt numbers (Nu¯) at rib and mid-rib locations over the leading and trailing walls. With rotation, the Nu distribution over the trailing wall followed the Nu0 pattern in the static channel; but underwent considerable modification from the Nu0 pattern on the leading wall by generating a haloed high Nu region at the obtuse entry corner. A parametric analysis which examined the detailed Ro and Bu impacts on Nu¯ at rib and mid-rib locations enlightened the streamwise developments of rotational effects on heat transfer performances over leading and trailing walls. This parametric analysis led to the generation of a set of physically consistent empirical Nu¯ correlations which assisted to evaluate the individual and interdependent Ro and Bu effects on Nu¯ at rib and mid-rib locations over the developing flow region. As an indication of the combined effects of Coriolis force, rotating buoyancy and the geometric features emulated by the present parallelogram ribbed channel, the area-averaged Nusselt numbers on the leading and trailing walls were modified to the respective ranges of 0.78–1.34 and 1.09–1.38 times of the non-rotating Nusselt numbers; while the f coefficients were raised to 1.05–5.2 times of the stationary levels, leading the TPF factors to the range of 0.979–1.575." @default.
- W2081367536 created "2016-06-24" @default.
- W2081367536 creator A5028513860 @default.
- W2081367536 creator A5065921015 @default.
- W2081367536 creator A5087437458 @default.
- W2081367536 date "2012-02-01" @default.
- W2081367536 modified "2023-10-17" @default.
- W2081367536 title "Thermal performance of developing flow in a radially rotating parallelogram channel with 45° ribs" @default.
- W2081367536 cites W1967617769 @default.
- W2081367536 cites W1967644500 @default.
- W2081367536 cites W1967702855 @default.
- W2081367536 cites W1973361691 @default.
- W2081367536 cites W1978092290 @default.
- W2081367536 cites W1978786439 @default.
- W2081367536 cites W1979402052 @default.
- W2081367536 cites W1982040579 @default.
- W2081367536 cites W1986485121 @default.
- W2081367536 cites W1987133026 @default.
- W2081367536 cites W1988337537 @default.
- W2081367536 cites W1998065747 @default.
- W2081367536 cites W2006875135 @default.
- W2081367536 cites W2014396250 @default.
- W2081367536 cites W2014946734 @default.
- W2081367536 cites W2018088612 @default.
- W2081367536 cites W2021289086 @default.
- W2081367536 cites W2029405708 @default.
- W2081367536 cites W2045631871 @default.
- W2081367536 cites W2049182157 @default.
- W2081367536 cites W2053924670 @default.
- W2081367536 cites W2057356558 @default.
- W2081367536 cites W2058268623 @default.
- W2081367536 cites W2067481433 @default.
- W2081367536 cites W2075155997 @default.
- W2081367536 cites W2076403673 @default.
- W2081367536 cites W2085535715 @default.
- W2081367536 cites W2135001544 @default.
- W2081367536 cites W2141304940 @default.
- W2081367536 cites W2165903411 @default.
- W2081367536 cites W2168089462 @default.
- W2081367536 cites W2297419434 @default.
- W2081367536 cites W3035359567 @default.
- W2081367536 cites W4245741439 @default.
- W2081367536 cites W4251829921 @default.
- W2081367536 doi "https://doi.org/10.1016/j.ijthermalsci.2011.09.013" @default.
- W2081367536 hasPublicationYear "2012" @default.
- W2081367536 type Work @default.
- W2081367536 sameAs 2081367536 @default.
- W2081367536 citedByCount "17" @default.
- W2081367536 countsByYear W20813675362012 @default.
- W2081367536 countsByYear W20813675362013 @default.
- W2081367536 countsByYear W20813675362014 @default.
- W2081367536 countsByYear W20813675362015 @default.
- W2081367536 countsByYear W20813675362017 @default.
- W2081367536 countsByYear W20813675362018 @default.
- W2081367536 countsByYear W20813675362020 @default.
- W2081367536 countsByYear W20813675362021 @default.
- W2081367536 countsByYear W20813675362022 @default.
- W2081367536 countsByYear W20813675362023 @default.
- W2081367536 crossrefType "journal-article" @default.
- W2081367536 hasAuthorship W2081367536A5028513860 @default.
- W2081367536 hasAuthorship W2081367536A5065921015 @default.
- W2081367536 hasAuthorship W2081367536A5087437458 @default.
- W2081367536 hasConcept C114088122 @default.
- W2081367536 hasConcept C121332964 @default.
- W2081367536 hasConcept C130230704 @default.
- W2081367536 hasConcept C182748727 @default.
- W2081367536 hasConcept C192562407 @default.
- W2081367536 hasConcept C196558001 @default.
- W2081367536 hasConcept C2524010 @default.
- W2081367536 hasConcept C33923547 @default.
- W2081367536 hasConcept C44000306 @default.
- W2081367536 hasConcept C50517652 @default.
- W2081367536 hasConcept C53118041 @default.
- W2081367536 hasConcept C57879066 @default.
- W2081367536 hasConcept C74050887 @default.
- W2081367536 hasConcept C74650414 @default.
- W2081367536 hasConceptScore W2081367536C114088122 @default.
- W2081367536 hasConceptScore W2081367536C121332964 @default.
- W2081367536 hasConceptScore W2081367536C130230704 @default.
- W2081367536 hasConceptScore W2081367536C182748727 @default.
- W2081367536 hasConceptScore W2081367536C192562407 @default.
- W2081367536 hasConceptScore W2081367536C196558001 @default.
- W2081367536 hasConceptScore W2081367536C2524010 @default.
- W2081367536 hasConceptScore W2081367536C33923547 @default.
- W2081367536 hasConceptScore W2081367536C44000306 @default.
- W2081367536 hasConceptScore W2081367536C50517652 @default.
- W2081367536 hasConceptScore W2081367536C53118041 @default.
- W2081367536 hasConceptScore W2081367536C57879066 @default.
- W2081367536 hasConceptScore W2081367536C74050887 @default.
- W2081367536 hasConceptScore W2081367536C74650414 @default.
- W2081367536 hasLocation W20813675361 @default.
- W2081367536 hasOpenAccess W2081367536 @default.
- W2081367536 hasPrimaryLocation W20813675361 @default.
- W2081367536 hasRelatedWork W2001454317 @default.
- W2081367536 hasRelatedWork W2014719582 @default.
- W2081367536 hasRelatedWork W2015258338 @default.
- W2081367536 hasRelatedWork W2082211540 @default.
- W2081367536 hasRelatedWork W2280900914 @default.