Matches in SemOpenAlex for { <https://semopenalex.org/work/W2005265804> ?p ?o ?g. }
- W2005265804 abstract "We consider direct numerical simulation (DNS) based on pseudospectral methods to study the heat transfer around a stationary sphere held at a constant temperature and subject to an ambient turbulent velocity and temperature condition. The sphere Reynolds number is in the range of 63–400, and the sphere diameter (d) varies from one to eight times the Kolmogorov scale (η). The ambient turbulent field is isotropic, and the Taylor microscale Reynolds number Rλ varies from 38 to 240. Results from two sets of DNS are presented. In the first set, the ambient velocity field is turbulent, but the ambient temperature is held constant. In the second set of simulations, both the ambient velocity and the temperature fields are turbulent. These two sets of simulations allow us to isolate the role of freestream velocity fluctuations and temperature fluctuations in modifying the mean and time-dependent heat transfer from the sphere. The mean Nusselt number is observed to be independent of Rλ. It is shown that the freestream turbulence does not have any significant effect on the mean Nusselt number, and the available correlations for a steady and uniform ambient can predict the mean Nusselt number under the turbulent ambient condition. The instantaneous Nusselt number, however, can differ significantly from the mean, and can be negative in case of large temperature fluctuation in the far field. The instantaneous Nusselt number obtained from the DNS is analyzed and compared with the analytical expression for the unsteady thermal response of a sphere. It is shown that the thermal added-mass effect is small for d/η≈1 but introduces spurious oscillation at higher d. The thermal history effect is shown to be insignificant for all d/η. Properties of the thermal wake in the presence of the turbulent velocity and temperature fields are studied. The mean thermal wake is observed to be shorter in streamwise direction and wider in crossflow direction in a turbulent ambient than that in a steady and uniform ambient. The mean thermal wake is shown to behave like a self-preserving laminar wake. It is also shown that the fluctuation in the ambient temperature is damped out in the sphere wake, and the large variation observed in the instantaneous Nusselt number arises from the variation in the local heat transfer near the front stagnation area of the sphere rather than the wake." @default.
- W2005265804 created "2016-06-24" @default.
- W2005265804 creator A5018435623 @default.
- W2005265804 creator A5049930474 @default.
- W2005265804 date "2008-07-01" @default.
- W2005265804 modified "2023-10-17" @default.
- W2005265804 title "Effect of freestream isotropic turbulence on heat transfer from a sphere" @default.
- W2005265804 cites W1970838888 @default.
- W2005265804 cites W1973668039 @default.
- W2005265804 cites W1974025710 @default.
- W2005265804 cites W1979296920 @default.
- W2005265804 cites W1982566538 @default.
- W2005265804 cites W1985417080 @default.
- W2005265804 cites W1991812746 @default.
- W2005265804 cites W1994671681 @default.
- W2005265804 cites W1995566341 @default.
- W2005265804 cites W1996018972 @default.
- W2005265804 cites W2011039321 @default.
- W2005265804 cites W2021498062 @default.
- W2005265804 cites W2022728096 @default.
- W2005265804 cites W2024690337 @default.
- W2005265804 cites W2026136326 @default.
- W2005265804 cites W2026615491 @default.
- W2005265804 cites W2033377793 @default.
- W2005265804 cites W2042483885 @default.
- W2005265804 cites W2044665398 @default.
- W2005265804 cites W2047191809 @default.
- W2005265804 cites W2053518117 @default.
- W2005265804 cites W2062029899 @default.
- W2005265804 cites W2070154660 @default.
- W2005265804 cites W2071792178 @default.
- W2005265804 cites W2073046654 @default.
- W2005265804 cites W2085057679 @default.
- W2005265804 cites W2085733842 @default.
- W2005265804 cites W2086658496 @default.
- W2005265804 cites W2091018704 @default.
- W2005265804 cites W2094443124 @default.
- W2005265804 cites W2106768556 @default.
- W2005265804 cites W2116301812 @default.
- W2005265804 cites W2137930961 @default.
- W2005265804 cites W2143020650 @default.
- W2005265804 cites W2146864909 @default.
- W2005265804 cites W2151276994 @default.
- W2005265804 cites W2163269298 @default.
- W2005265804 cites W2169373764 @default.
- W2005265804 doi "https://doi.org/10.1063/1.2963138" @default.
- W2005265804 hasPublicationYear "2008" @default.
- W2005265804 type Work @default.
- W2005265804 sameAs 2005265804 @default.
- W2005265804 citedByCount "21" @default.
- W2005265804 countsByYear W20052658042012 @default.
- W2005265804 countsByYear W20052658042013 @default.
- W2005265804 countsByYear W20052658042016 @default.
- W2005265804 countsByYear W20052658042017 @default.
- W2005265804 countsByYear W20052658042018 @default.
- W2005265804 countsByYear W20052658042019 @default.
- W2005265804 countsByYear W20052658042020 @default.
- W2005265804 countsByYear W20052658042021 @default.
- W2005265804 countsByYear W20052658042022 @default.
- W2005265804 countsByYear W20052658042023 @default.
- W2005265804 crossrefType "journal-article" @default.
- W2005265804 hasAuthorship W2005265804A5018435623 @default.
- W2005265804 hasAuthorship W2005265804A5049930474 @default.
- W2005265804 hasBestOaLocation W20052658041 @default.
- W2005265804 hasConcept C120665830 @default.
- W2005265804 hasConcept C121332964 @default.
- W2005265804 hasConcept C130230704 @default.
- W2005265804 hasConcept C15476950 @default.
- W2005265804 hasConcept C182748727 @default.
- W2005265804 hasConcept C184050105 @default.
- W2005265804 hasConcept C18533594 @default.
- W2005265804 hasConcept C189223162 @default.
- W2005265804 hasConcept C196558001 @default.
- W2005265804 hasConcept C2776911258 @default.
- W2005265804 hasConcept C50517652 @default.
- W2005265804 hasConcept C57879066 @default.
- W2005265804 hasConcept C74650414 @default.
- W2005265804 hasConcept C87801597 @default.
- W2005265804 hasConcept C97355855 @default.
- W2005265804 hasConceptScore W2005265804C120665830 @default.
- W2005265804 hasConceptScore W2005265804C121332964 @default.
- W2005265804 hasConceptScore W2005265804C130230704 @default.
- W2005265804 hasConceptScore W2005265804C15476950 @default.
- W2005265804 hasConceptScore W2005265804C182748727 @default.
- W2005265804 hasConceptScore W2005265804C184050105 @default.
- W2005265804 hasConceptScore W2005265804C18533594 @default.
- W2005265804 hasConceptScore W2005265804C189223162 @default.
- W2005265804 hasConceptScore W2005265804C196558001 @default.
- W2005265804 hasConceptScore W2005265804C2776911258 @default.
- W2005265804 hasConceptScore W2005265804C50517652 @default.
- W2005265804 hasConceptScore W2005265804C57879066 @default.
- W2005265804 hasConceptScore W2005265804C74650414 @default.
- W2005265804 hasConceptScore W2005265804C87801597 @default.
- W2005265804 hasConceptScore W2005265804C97355855 @default.
- W2005265804 hasIssue "7" @default.
- W2005265804 hasLocation W20052658041 @default.
- W2005265804 hasOpenAccess W2005265804 @default.
- W2005265804 hasPrimaryLocation W20052658041 @default.
- W2005265804 hasRelatedWork W1561976317 @default.
- W2005265804 hasRelatedWork W1966493176 @default.