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- W2017697962 abstract "Abstract Mean velocity profiles and turbulent intensities under isothermal conditions were measured in ethylene glycol flowing through a 1.434 in.i.d. Vertical pipe at a Reynolds number of about 6000. In addition, the rms temperature fluctuation t′ and the turbulent velocity-temperature correlation u x t were also measured under a uniform heat flux of 8000 Btu/hft2, using a hot-tilm sensor. Temperature spectra at various radial locations, the velocity spectrum at the center of the pipe and various scales of turbulence were estimated. Results show that the mean velocity distribution in the turbulent core lies above the “universal velocity profile.” Comparison with Laufer's data indicates that the structure of isothermal turbulence within the viscous sublayer is independent of Reynolds number within the range NRe = 6000–50000. Near the center of the pipe ux′, and t′ exhibit radial homogeneity. In this region, the turbulent velocity-temperature field approaches isotropy. The velocity spectra estimated do not exhibit a wave number region with a − 5 3 slope as predicted by Kolmogoroff, nor do the temperature spectra follow the predictions of Batchelor's uniform straining model under the low NRe highNpr conditions of the experiment." @default.
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- W2017697962 date "1972-01-01" @default.
- W2017697962 modified "2023-09-25" @default.
- W2017697962 title "Structure of turbulent velocity and temperature fields in ethylene glycol pipe flow at low reynolds number" @default.
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- W2017697962 doi "https://doi.org/10.1016/0017-9310(72)90171-8" @default.
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