Analyses of Turbulence in the Neutrally and Stably Stratified Planetary Boundary Layer

Analyses of Turbulence in the Neutrally and Stably Stratified Planetary Boundary Layer

Author: Cedrick Ansorge

Publisher: Springer

Published: 2016-09-15

Total Pages: 180

ISBN-13: 3319450441

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This thesis presents a study of strong stratification and turbulence collapse in the planetary boundary layer, opening a new avenue in this field. It is the first work to study all regimes of stratified turbulence in a unified simulation framework without a break in the paradigms for representation of turbulence. To date, advances in our understanding and the parameterization of turbulence in the stable boundary layer have been hampered by difficulties simulating the strongly stratified regime, and the analysis has primarily been based on field measurements. The content presented here changes that paradigm by demonstrating the ability of direct numerical simulation to address this problem, and by doing so to remove the uncertainty of turbulence models from the analysis. Employing a stably stratified Ekman layer as a simplified physical model of the stable boundary layer, the three stratification regimes observed in nature— weakly, intermediately and strongly stratified—are reproduced, and the data is subsequently used to answer key, long-standing questions. The main part of the book is organized in three sections, namely a comprehensive introduction, numerics, and physics. The thesis ends with a clear and concise conclusion that distills specific implications for the study of the stable boundary layer. This structure emphasizes the physical results, but at the same time gives relevance to the technical aspects of numerical schemes and post-processing tools. The selection of the relevant literature during the introduction, and its use along the work appropriately combines literature from two research communities: fluid dynamics, and boundary-layer meteorology.


Turbulent Flows

Turbulent Flows

Author: G. Biswas

Publisher: Narosa Publishing House

Published: 2002

Total Pages: 476

ISBN-13:

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This book allows readers to tackle the challenges of turbulent flow problems with confidence. It covers the fundamentals of turbulence, various modeling approaches, and experimental studies. The fundamentals section includes isotropic turbulence and anistropic turbulence, turbulent flow dynamics, free shear layers, turbulent boundary layers and plumes. The modeling section focuses on topics such as eddy viscosity models, standard K-E Models, Direct Numerical Stimulation, Large Eddy Simulation, and their applications. The measurement of turbulent fluctuations experiments in isothermal and stratified turbulent flows are explored in the experimental methods section. Special topics include modeling of near wall turbulent flows, compressible turbulent flows, and more.


Turbulence and Diffusion in Stable Environments

Turbulence and Diffusion in Stable Environments

Author: Julian C. R. Hunt

Publisher: Oxford University Press, USA

Published: 1985

Total Pages: 344

ISBN-13:

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Good,No Highlights,No Markup,all pages are intact, Slight Shelfwear,may have the corners slightly dented, may have slight color changes/slightly damaged spine.


Turbulence and Mixing in Stratified Shear Flows

Turbulence and Mixing in Stratified Shear Flows

Author:

Publisher:

Published: 1998

Total Pages: 0

ISBN-13:

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A research program was carried out to investigate turbulent mixing in stably stratified shear flows with the hope of gaining an improved understanding of stably stratified nocturnal boundary layers. The program was mainly laboratory experimental, supplemented by theoretical and numerical developments. The flow configuration consisted of a three-layer system, with upper turbulent layer driven over the lower stratified, quiescent, layer while an intermediate (inversion) layer sandwiched between these two layers. The studies included the nature of instabilities, intermittent generation of turbulence, sustenance and decay of turbulence under varying background conditions (essentially determined by the Richardson number) and ensuing turbulent mixing in the inversion layer. An unprecedented volume of laboratory data were gathered during the program, which enabled to delve into the mechanics and energetics of mixing in stable boundary layers. The laboratory results were compared with, and was used to gain insights on, field observations. Also, the parameterizations developed were compared with those currently used in numerical models. A meso-scale numerical model also was used to check the efficacy of some of the laboratory-based parameterizations.


Second Moment Closure Modeling for Rotating Stably Stratified Turbulent Shear Flow

Second Moment Closure Modeling for Rotating Stably Stratified Turbulent Shear Flow

Author: Minsuk Ji

Publisher:

Published: 2006

Total Pages: 260

ISBN-13: 9780542983870

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The new turbulence model is tested in various channel flows where inhomogeneity effects are important. Stably stratified channel flow, spanwise rotating channel flow with passive scalar, and natural convection flow in a vertical channel are considered. When compared with the predictions of the IP model, the new model yields better results for stably stratified channel flow, comparable results for rotating channel flow, and worse results for natural convection flow.