Structure functions of temperature fluctuations in turbulent shear flows

Author:

Antonia R. A.,Atta C. W. Van

Abstract

Structure functions of turbulent temperature and velocity fluctuations are measured both for the atmosphere, in the surface layer over land, and for the laboratory, in the inner region of a thermal boundary layer and on the axis of a heated jet. Even-order temperature structure functions, up to order eight, generally compare favourably with the analysis of Antonia & Van Atta over the inertial subrange. The Reynolds number dependence of these structure functions, as predicted by the analysis, is in qualitative agreement with the measured data. Odd-order temperature structure functions depart significantly from the isotropic value of zero, particularly at large time delays. This departure is reasonably well predicted, over the inertial subrange, by postulating a simple ramp model for the temperature fluctuations. Assumptions involved in this model are directly tested by measurements in the heated jet. The ramp structure does not seriously affect either the even-order temperature structure functions or the mixed velocity-temperature functions, which include even-order moments of the temperature difference.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference24 articles.

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2. Yeh, T. T. 1971 Spectral transfer and higher-order correlations of velocity and temperature fluctuations in heated grid turbulence. Ph.D. thesis,University of California,San Diego.

3. Oboukhov, A. M. 1962 Some specific features of atmospheric turbulence.J. Fluid Mech. 13,77.

4. Paquin, J. E. & Pond, S. 1971 The determination of the Kolmogorov constants for velocity, temperature and humidity fluctuations from second- and third-order structure functions.J. Fluid Mech. 50,257.

5. Van Atta, C. W. 1974 Influence of fluctuations in dissipation rates on some statistical properties of turbulent scalar fields.Izv. Atmos. Ocean. Phys. 10,712.

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