Matches in SemOpenAlex for { <https://semopenalex.org/work/W2752808942> ?p ?o ?g. }
- W2752808942 endingPage "219" @default.
- W2752808942 startingPage "202" @default.
- W2752808942 abstract "In this study, we experimentally investigate the flow field characteristics in a fuel rod bundle with a spacer grid and split-type mixing vanes at a low Reynolds number of 14, 000. Time-resolved stereoscopic particle image velocimetry (TR-SPIV) measurements were performed in a matched-index-of-refraction facility, and taken downstream of the mixing vanes. Velocity measurements were performed along the vertical-horizontal planes in the inter-channels between the fuel rods. From the obtained TR-SPIV velocity vector fields, the full-field flow statistics such as the mean velocity and Reynolds stresses were computed. Moreover, spectral analysis, squared coherent functions and spatial-temporal velocity cross correlations were performed on the TR-SPIV velocity snapshots. A variety of integral length scales estimated from the two-point spatial cross-correlations have shown that the flow downstream of the mixing vanes was strongly anisotropic. Vortex shedding frequencies were found to contribute to the peaks of coherent functions computed from the fluctuating velocity. This work is the first experimental evidence confirming the findings and discussions from previous numerical studies about the anisotropy flow and a wide range of turbulence length scales generated by the mixing vanes." @default.
- W2752808942 created "2017-09-15" @default.
- W2752808942 creator A5022858244 @default.
- W2752808942 creator A5029867999 @default.
- W2752808942 date "2017-10-01" @default.
- W2752808942 modified "2023-10-01" @default.
- W2752808942 title "Stereoscopic particle image velocimetry measurements of flow in a rod bundle with a spacer grid and mixing vanes at a low Reynolds number" @default.
- W2752808942 cites W1971545316 @default.
- W2752808942 cites W1972231936 @default.
- W2752808942 cites W1978407809 @default.
- W2752808942 cites W1981538491 @default.
- W2752808942 cites W1982556194 @default.
- W2752808942 cites W1984395367 @default.
- W2752808942 cites W1992189541 @default.
- W2752808942 cites W1997026836 @default.
- W2752808942 cites W1997776253 @default.
- W2752808942 cites W1998572136 @default.
- W2752808942 cites W2001341875 @default.
- W2752808942 cites W2005423742 @default.
- W2752808942 cites W2007686604 @default.
- W2752808942 cites W2014907842 @default.
- W2752808942 cites W2020997636 @default.
- W2752808942 cites W2036317669 @default.
- W2752808942 cites W2036941821 @default.
- W2752808942 cites W2038252488 @default.
- W2752808942 cites W2040508995 @default.
- W2752808942 cites W2043914165 @default.
- W2752808942 cites W2055402230 @default.
- W2752808942 cites W2064923141 @default.
- W2752808942 cites W2066202097 @default.
- W2752808942 cites W2066223016 @default.
- W2752808942 cites W2069963555 @default.
- W2752808942 cites W2070200434 @default.
- W2752808942 cites W2072778810 @default.
- W2752808942 cites W2081305414 @default.
- W2752808942 cites W2087042948 @default.
- W2752808942 cites W2093390110 @default.
- W2752808942 cites W2095464851 @default.
- W2752808942 cites W2106822551 @default.
- W2752808942 cites W2118944048 @default.
- W2752808942 cites W2121639882 @default.
- W2752808942 cites W2125940693 @default.
- W2752808942 cites W2151603787 @default.
- W2752808942 cites W2165844638 @default.
- W2752808942 cites W2205734188 @default.
- W2752808942 cites W2275889841 @default.
- W2752808942 cites W2467135150 @default.
- W2752808942 cites W2476129288 @default.
- W2752808942 cites W2511369178 @default.
- W2752808942 cites W2553297443 @default.
- W2752808942 cites W2586217082 @default.
- W2752808942 cites W2602724885 @default.
- W2752808942 cites W3101185016 @default.
- W2752808942 cites W4244075655 @default.
- W2752808942 doi "https://doi.org/10.1016/j.ijheatfluidflow.2017.08.011" @default.
- W2752808942 hasPublicationYear "2017" @default.
- W2752808942 type Work @default.
- W2752808942 sameAs 2752808942 @default.
- W2752808942 citedByCount "60" @default.
- W2752808942 countsByYear W27528089422018 @default.
- W2752808942 countsByYear W27528089422019 @default.
- W2752808942 countsByYear W27528089422020 @default.
- W2752808942 countsByYear W27528089422021 @default.
- W2752808942 countsByYear W27528089422022 @default.
- W2752808942 countsByYear W27528089422023 @default.
- W2752808942 crossrefType "journal-article" @default.
- W2752808942 hasAuthorship W2752808942A5022858244 @default.
- W2752808942 hasAuthorship W2752808942A5029867999 @default.
- W2752808942 hasConcept C120665830 @default.
- W2752808942 hasConcept C121332964 @default.
- W2752808942 hasConcept C138777275 @default.
- W2752808942 hasConcept C140820882 @default.
- W2752808942 hasConcept C147196274 @default.
- W2752808942 hasConcept C178760647 @default.
- W2752808942 hasConcept C182748727 @default.
- W2752808942 hasConcept C196558001 @default.
- W2752808942 hasConcept C207857233 @default.
- W2752808942 hasConcept C2524010 @default.
- W2752808942 hasConcept C33923547 @default.
- W2752808942 hasConcept C38349280 @default.
- W2752808942 hasConcept C57879066 @default.
- W2752808942 hasConcept C62520636 @default.
- W2752808942 hasConceptScore W2752808942C120665830 @default.
- W2752808942 hasConceptScore W2752808942C121332964 @default.
- W2752808942 hasConceptScore W2752808942C138777275 @default.
- W2752808942 hasConceptScore W2752808942C140820882 @default.
- W2752808942 hasConceptScore W2752808942C147196274 @default.
- W2752808942 hasConceptScore W2752808942C178760647 @default.
- W2752808942 hasConceptScore W2752808942C182748727 @default.
- W2752808942 hasConceptScore W2752808942C196558001 @default.
- W2752808942 hasConceptScore W2752808942C207857233 @default.
- W2752808942 hasConceptScore W2752808942C2524010 @default.
- W2752808942 hasConceptScore W2752808942C33923547 @default.
- W2752808942 hasConceptScore W2752808942C38349280 @default.
- W2752808942 hasConceptScore W2752808942C57879066 @default.
- W2752808942 hasConceptScore W2752808942C62520636 @default.
- W2752808942 hasLocation W27528089421 @default.
- W2752808942 hasOpenAccess W2752808942 @default.