BLISS
BLISS
About
About BLISS
People
Pushing the Boundary (Layer)
Contact
News
Calendar
Seminars
Research
Projects
Resources
Publications
Presentations
Opportunities
Light
Dark
Automatic
LES
Large-Eddy Simulation of the Atmospheric Boundary Layer
Over the last 50 years the large-eddy simulation (LES) technique has developed into one of the most prominent numerical tools used to …
Rob Stoll
,
Dr. Jeremy A. Gibbs
,
Scott T. Salesky
,
William Anderson
,
Marc Calaf
PDF
Cite
DOI
Structure Functions and Structure Parameters of Velocity Fluctuations in Numerically Simulated Atmospheric Convective Boundary Layer Flows
We extend our previous study, which dealt with structure functions of potential temperature fluctuations, and focus on the …
Dr. Jeremy A. Gibbs
,
Evgeni Fedorovich
PDF
Cite
DOI
MicroHH 1.0: a computational fluid dynamics code for direct numerical simulation and large-eddy simulation of atmospheric boundary layer flows
This paper describes MicroHH 1.0, a new and open-source (
www.microhh.org
) computational fluid dynamics code for the simulation of …
Chiel C. van Heerwaarden
,
B. J. H. van Stratum
,
Thijs Heus
,
Dr. Jeremy A. Gibbs
,
Evgeni Fedorovich
,
Juan-Pedro Mellado
PDF
Cite
DOI
Sensitivity of turbulence statistics in the lower portion of a numerically simulated stable boundary layer to parameters of the Deardorff subgrid turbulence model
Some 36 years following its creation, the Deardorff 1980 (D80) subgrid turbulence model is perhaps still the most ubiquitous scheme …
Dr. Jeremy A. Gibbs
,
Evgeni Fedorovich
PDF
Cite
DOI
Comparison of Direct and Spectral Methods for Evaluation of the Temperature Structure Parameter in Numerically Simulated Convective Boundary Layer Flows
In many engineering and meteorological applications, atmospheric turbulence within the planetary boundary layer is described in terms …
Dr. Jeremy A. Gibbs
,
Evgeni Fedorovich
,
Björn Maronga
,
Charlotte E. Wainwright
,
Manuel Dröse
PDF
Cite
DOI
Measurements of the Temperature Structure-Function Parameters with a Small Unmanned Aerial System Compared with a Sodar
The structure function is often used to quantify the intensity of spatial inhomogeneities within turbulent flows. Here, the Small …
Dr.Tim Bonin
,
David C. Goines
,
Aaron K. Scott
,
Charlotte E. Wainwright
,
Dr. Jeremy A. Gibbs
,
Phillip B. Chilson
PDF
Cite
DOI
Methods for Evaluating the Temperature Structure-Function Parameter Using Unmanned Aerial Systems and Large-Eddy Simulation
Small-scale turbulent fluctuations of temperature are known to affect the propagation of both electromagnetic and acoustic waves. …
Charlotte E. Wainwright
,
Dr.Tim Bonin
,
Phillip B. Chilson
,
Dr. Jeremy A. Gibbs
,
Evgeni Fedorovich
,
Robert D. Palmer
PDF
Cite
DOI
Effects of Temporal Discretization on Turbulence Statistics and Spectra in Numerically Simulated Convective Boundary Layers
Six state-of-the-art large-eddy simulation codes were compared in Fedorovich et al. (Preprints, 16th American Meteorological Society …
Dr. Jeremy A. Gibbs
,
Evgeni Fedorovich
PDF
Cite
DOI
A Time Series Sodar Simulator Based on Large-Eddy Simulation
A sodar simulator capable of producing time series data emulating sodar signals has been developed and tested. The atmospheric fields …
Charlotte E. Wainwright
,
Phillip M. Stepanian
,
Phillip B. Chilson
,
Robert D. Palmer
,
Dr. Jeremy A. Gibbs
,
Evgeni Fedorovich
PDF
Cite
DOI
Comparison of Convective Boundary Layer Velocity Spectra Retrieved from Large-Eddy-Simulation and Weather Research and Forecasting Model Data
As computing capabilities expand, operational and research environments are moving toward the use of finescale atmospheric numerical …
Dr. Jeremy A. Gibbs
,
Evgeni Fedorovich
PDF
Cite
DOI
Cite
×
Cite
×