ATMOSPHERIC STABILITY EFFECT ON SUBGRID-SCALE PHYSICS FOR LARGE-EDDY SIMULATION

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dc.contributor.author Porte-Agel F.
dc.contributor.author Pahlow M.
dc.contributor.author Meneveau C.
dc.contributor.author Parlange M.B.
dc.date.accessioned 2021-03-17T00:48:35Z
dc.date.available 2021-03-17T00:48:35Z
dc.date.issued 2001
dc.identifier https://www.elibrary.ru/item.asp?id=834755
dc.identifier.citation Advances in Water Resources, 2001, 24, 9-10, 1085-1102
dc.identifier.issn 0309-1708
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/26805
dc.description.abstract Field measurements in the atmospheric boundary layer were carried out to identify the effect of atmospheric stability on subgrid-scale physics for large-eddy simulation. The basic instrumentation setup consisted of 12 three-dimensional sonic anemometers arranged in two parallel horizontal arrays (seven sensors in the lower array and five sensors in the upper array). Data from this setup are used to compute the subgrid-scale (SGS) heat fluxes and SGS dissipation of the temperature variance under stable and unstable stability conditions. The relative contribution of the SGS vertical flux to the total turbulent flux increases when going from unstable to stable conditions. The relative importance of negative SGS dissipation (backscatter) events becomes larger under stable conditions. The model coefficients for two well-known SGS models (eddy-viscosity and non-linear) are computed. Model coefficients are found to depend strongly on stability. Under both stable and unstable conditions, large negative SGS dissipation is associated with the onset of ejection events while large positive SGS dissipation tends to occur during the onset of sweep events. These findings are also supported by conditionally sampled 2D velocity and temperature fields obtained using the 12 anemometers placed in a vertical array.
dc.subject TURBULENCE
dc.subject ATMOSPHERIC BOUNDARY LAYER
dc.subject LARGE-EDDY SIMULATION
dc.subject SUBGRID-SCALE MODELING
dc.title ATMOSPHERIC STABILITY EFFECT ON SUBGRID-SCALE PHYSICS FOR LARGE-EDDY SIMULATION
dc.type Статья


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