Large Eddy Simulation of Non-Local Turbulence and Integral Measures of Atmospheric Boundary Layers

A new large eddy simulation (LES) code is developed and used to investigate non-local features of turbulent planetary boundary layers (PBLs). The LES code is based on filtered Navier-Stokes equations, which describe motions of incompressible, Boussinesq fluid at high Reynolds numbers. The code compu...

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Bibliographic Details
Main Author: Esau, Igor
Format: Doctoral Thesis
Language:English
Published: Uppsala universitet, Institutionen för geovetenskaper 2003
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-3321
http://nbn-resolving.de/urn:isbn:91-554-5519-0
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spelling ndltd-UPSALLA1-oai-DiVA.org-uu-33212013-01-08T13:03:42ZLarge Eddy Simulation of Non-Local Turbulence and Integral Measures of Atmospheric Boundary LayersengEsau, IgorUppsala universitet, Institutionen för geovetenskaperUppsala : Acta Universitatis Upsaliensis2003MeteorologyPlanetary boundary layerslarge eddy simulationsnon-local turbulenceMeteorologiMeteorologyMeteorologiA new large eddy simulation (LES) code is developed and used to investigate non-local features of turbulent planetary boundary layers (PBLs). The LES code is based on filtered Navier-Stokes equations, which describe motions of incompressible, Boussinesq fluid at high Reynolds numbers. The code computes directly large-scale, non-universal turbulence in the PBL whereas small-scale, universal turbulence is parameterized by a dynamic mixed subgrid closure. The LES code is thoroughly tested against high quality laboratory and field data. This study addresses non-local properties of turbulence which emphasis on the stable stratification. Its basic results are as follows. The flow stability in PBLs is generally caused by two mechanisms: the negative buoyancy force (in the stable density stratification) and the Coriolis force (in the rotating system). The latter stabilizes the flow if the earth’s vorticity and the turbulent vorticity are anti-parallel. The Coriolis force stability suppresses large-scale turbulence and makes large eddies asymmetric. The density stratification suppresses vertical scales of turbulence. Joint actions of the Coriolis and the buoyancy forces result in a more complex behavior of turbulence. Particularly, the layers of vigorous turbulence may appear in the course of development of low-level jets in baroclinic atmosphere. Non-local effects determine integral measures of PBLs, first of all the PBL depth. This study clearly demonstrates its pronounced dependences on the Coriolis parameter, the Kazanski-Monin internal stability parameter, and newly introduced imposed-stability and baroclinicity parameters. An LES database is created and used to validate an advanced PBL-depth formulation. LES support the idea that PBLs interact with the stably stratified free flow through the radiation of gravity waves, excited by large turbulent eddies at the interface. Doctoral thesis, comprehensive summaryinfo:eu-repo/semantics/doctoralThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-3321urn:isbn:91-554-5519-0Comprehensive Summaries of Uppsala Dissertations from the Faculty of Science and Technology, 1104-232X ; 800application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Meteorology
Planetary boundary layers
large eddy simulations
non-local turbulence
Meteorologi
Meteorology
Meteorologi
spellingShingle Meteorology
Planetary boundary layers
large eddy simulations
non-local turbulence
Meteorologi
Meteorology
Meteorologi
Esau, Igor
Large Eddy Simulation of Non-Local Turbulence and Integral Measures of Atmospheric Boundary Layers
description A new large eddy simulation (LES) code is developed and used to investigate non-local features of turbulent planetary boundary layers (PBLs). The LES code is based on filtered Navier-Stokes equations, which describe motions of incompressible, Boussinesq fluid at high Reynolds numbers. The code computes directly large-scale, non-universal turbulence in the PBL whereas small-scale, universal turbulence is parameterized by a dynamic mixed subgrid closure. The LES code is thoroughly tested against high quality laboratory and field data. This study addresses non-local properties of turbulence which emphasis on the stable stratification. Its basic results are as follows. The flow stability in PBLs is generally caused by two mechanisms: the negative buoyancy force (in the stable density stratification) and the Coriolis force (in the rotating system). The latter stabilizes the flow if the earth’s vorticity and the turbulent vorticity are anti-parallel. The Coriolis force stability suppresses large-scale turbulence and makes large eddies asymmetric. The density stratification suppresses vertical scales of turbulence. Joint actions of the Coriolis and the buoyancy forces result in a more complex behavior of turbulence. Particularly, the layers of vigorous turbulence may appear in the course of development of low-level jets in baroclinic atmosphere. Non-local effects determine integral measures of PBLs, first of all the PBL depth. This study clearly demonstrates its pronounced dependences on the Coriolis parameter, the Kazanski-Monin internal stability parameter, and newly introduced imposed-stability and baroclinicity parameters. An LES database is created and used to validate an advanced PBL-depth formulation. LES support the idea that PBLs interact with the stably stratified free flow through the radiation of gravity waves, excited by large turbulent eddies at the interface.
author Esau, Igor
author_facet Esau, Igor
author_sort Esau, Igor
title Large Eddy Simulation of Non-Local Turbulence and Integral Measures of Atmospheric Boundary Layers
title_short Large Eddy Simulation of Non-Local Turbulence and Integral Measures of Atmospheric Boundary Layers
title_full Large Eddy Simulation of Non-Local Turbulence and Integral Measures of Atmospheric Boundary Layers
title_fullStr Large Eddy Simulation of Non-Local Turbulence and Integral Measures of Atmospheric Boundary Layers
title_full_unstemmed Large Eddy Simulation of Non-Local Turbulence and Integral Measures of Atmospheric Boundary Layers
title_sort large eddy simulation of non-local turbulence and integral measures of atmospheric boundary layers
publisher Uppsala universitet, Institutionen för geovetenskaper
publishDate 2003
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-3321
http://nbn-resolving.de/urn:isbn:91-554-5519-0
work_keys_str_mv AT esauigor largeeddysimulationofnonlocalturbulenceandintegralmeasuresofatmosphericboundarylayers
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