Matches in SemOpenAlex for { <https://semopenalex.org/work/W2068382662> ?p ?o ?g. }
Showing items 1 to 62 of
62
with 100 items per page.
- W2068382662 endingPage "471" @default.
- W2068382662 startingPage "465" @default.
- W2068382662 abstract "In the HTR-PM pebble bed reactor heat is produced in a cylindrical core surrounded by a graphite reflector. The helium coolant flowing down through the core first flows up through 30 coolant channels in the reflector, cooling it. Heat is also transferred through the reflector in radial direction to the pressure vessel and other surroundings, which is the main heat loss mechanism during a loss of cooling accident. Usually heat transfer in the reflector region is modelled using a 2D axi-symmetric geometry, modelling the region containing the coolant channels as a homogenized mixture of coolant channel and graphite reflector using a porosity value, sometimes using very course meshes. In reality temperature gradients in azimuthal direction will exist around the coolant channels, possibly affecting both heat transfer to the coolant and heat transfer through the graphite around the coolant channels to the outer boundary. This paper investigates the accuracy of the 2D model by comparing calculations for a fine and course 2D mesh with a 3D mesh in which the coolant channel geometry is explicitly modelled. Two cases were investigated: one representing full power operation, and the other a loss of forced cooling incident with no helium flow through the coolant channels. The course 2D mesh resulted in large errors in the reflector temperature field for full power conditions, overestimating the temperature drop across the coolant channel region. The 2D fine mesh compared reasonably well with the 3D mesh, although it resulted in both an overestimation of the effective heat transfer rate to the coolant channels and an underestimation of the effective resistance to heat transfer in the reflector in the radial direction around the coolant channels. Especially the last can lead to an underestimation of reflector and core temperatures during a loss of coolant accident. To amend this problem, the conductivity of the graphite in the coolant channel region should be adjusted in the 2D porous model to compensate for the added effective resistance to heat transfer in radial direction due to the geometry." @default.
- W2068382662 created "2016-06-24" @default.
- W2068382662 creator A5040255240 @default.
- W2068382662 creator A5054838430 @default.
- W2068382662 creator A5056180972 @default.
- W2068382662 creator A5057871628 @default.
- W2068382662 date "2014-05-01" @default.
- W2068382662 modified "2023-09-24" @default.
- W2068382662 title "Comparison of 2D and 3D heat transfer models around the coolant channels in the HTR-PM side reflector" @default.
- W2068382662 cites W1992560186 @default.
- W2068382662 cites W2095926886 @default.
- W2068382662 doi "https://doi.org/10.1016/j.nucengdes.2013.12.017" @default.
- W2068382662 hasPublicationYear "2014" @default.
- W2068382662 type Work @default.
- W2068382662 sameAs 2068382662 @default.
- W2068382662 citedByCount "1" @default.
- W2068382662 countsByYear W20683826622022 @default.
- W2068382662 crossrefType "journal-article" @default.
- W2068382662 hasAuthorship W2068382662A5040255240 @default.
- W2068382662 hasAuthorship W2068382662A5054838430 @default.
- W2068382662 hasAuthorship W2068382662A5056180972 @default.
- W2068382662 hasAuthorship W2068382662A5057871628 @default.
- W2068382662 hasConcept C114088122 @default.
- W2068382662 hasConcept C120665830 @default.
- W2068382662 hasConcept C121332964 @default.
- W2068382662 hasConcept C192562407 @default.
- W2068382662 hasConcept C2778415886 @default.
- W2068382662 hasConcept C2982854487 @default.
- W2068382662 hasConcept C50517652 @default.
- W2068382662 hasConcept C57879066 @default.
- W2068382662 hasConcept C91914117 @default.
- W2068382662 hasConcept C97355855 @default.
- W2068382662 hasConceptScore W2068382662C114088122 @default.
- W2068382662 hasConceptScore W2068382662C120665830 @default.
- W2068382662 hasConceptScore W2068382662C121332964 @default.
- W2068382662 hasConceptScore W2068382662C192562407 @default.
- W2068382662 hasConceptScore W2068382662C2778415886 @default.
- W2068382662 hasConceptScore W2068382662C2982854487 @default.
- W2068382662 hasConceptScore W2068382662C50517652 @default.
- W2068382662 hasConceptScore W2068382662C57879066 @default.
- W2068382662 hasConceptScore W2068382662C91914117 @default.
- W2068382662 hasConceptScore W2068382662C97355855 @default.
- W2068382662 hasLocation W20683826621 @default.
- W2068382662 hasOpenAccess W2068382662 @default.
- W2068382662 hasPrimaryLocation W20683826621 @default.
- W2068382662 hasRelatedWork W1976970033 @default.
- W2068382662 hasRelatedWork W2032629119 @default.
- W2068382662 hasRelatedWork W2053620875 @default.
- W2068382662 hasRelatedWork W2087088388 @default.
- W2068382662 hasRelatedWork W2292012288 @default.
- W2068382662 hasRelatedWork W2390456568 @default.
- W2068382662 hasRelatedWork W2766835711 @default.
- W2068382662 hasRelatedWork W3016735737 @default.
- W2068382662 hasRelatedWork W4312339488 @default.
- W2068382662 hasRelatedWork W4321495359 @default.
- W2068382662 hasVolume "271" @default.
- W2068382662 isParatext "false" @default.
- W2068382662 isRetracted "false" @default.
- W2068382662 magId "2068382662" @default.
- W2068382662 workType "article" @default.