Coherent structures in stably stratified wall-bounded turbulent flows
ORAL
Abstract
To date, a growing body of literature has documented the existence and impacts of coherent structures known as large- and very-large-scale motions within wall-bounded turbulent flows under neutral and unstable thermal stratification. Stable stratification limits vertical transport and turbulent mixing within flows, which makes it unclear the extent to which these previous findings on coherent structures are applicable to stably stratified flows. In this study, we investigate the existence and characteristics of coherent structures under stable stratification with a wide range of statistical and spectral analyses. Outer peaks in premultiplied spectrograms under weak stability indicate the presence of large-scale motions, but these peaks become weaker with increasing stability. A quadrant analysis of turbulent transport efficiencies (the ratio of net fluxes to their respective downgradient components) demonstrates dependencies on both stability and height above ground, which is evidence of morphological differences in the coherent structures under increasing stability. Amplitude modulation by large-scale streamwise velocity was found to decrease with increasing gradient Richardson number, whereas modulation by large-scale vertical velocity was approximately zero across all stability ranges. For sufficiently stable stratification, large eddies are suppressed enough to limit any inner-outer scale interactions.
–
Publication: Greene, B.R. and S.T. Salesky: Coherent Structures in Stably Stratified Wall-Bounded Turbulent Flows. J. Fluid Mech., in review.
Presenters
-
Brian R Greene
University of Oklahoma
Authors
-
Brian R Greene
University of Oklahoma
-
Scott T Salesky
University of Oklahoma