Exploring self-correlation in flux-gradient relationships for stably stratified conditions

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Abstract

In this paper, the degree of scatter in flux-gradient relationships for stably stratified conditions is analyzed. It is generally found that scatter in the dimensionless lapse rate φh is larger than in the dimensionless shear φm when plotted versus the stability parameter z/Λ (where Λ is the local Obukhov length). Here, this phenomenon is explained to be a result of self-correlation due to the occurrence of the momentum and the heat flux on both axes, measurement uncertainties, and other possibly relevant physical processes left aside. It is shown that the ratio between relative errors in the turbulent fluxes influences the orientation of self-correlation in the flux-gradient relationships. In stable conditions, the scatter in φm is largely suppressed by self-correlation while for φh this is not the case (vice versa for unstable stratification). An alternative way of plotting is discussed for determining the slope of the linear φm function. © 2006 American Meteorological Society.

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APA

Baas, P., Steeneveld, G. J., van de Wiel, B. J. H., & Holstlag, A. A. M. (2006). Exploring self-correlation in flux-gradient relationships for stably stratified conditions. Journal of the Atmospheric Sciences, 63(11), 3045–3054. https://doi.org/10.1175/JAS3778.1

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