Jeremy A. Gibbs
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Publications
Jeremy A. Gibbs
,
Joshua G. Gebauer
,
Louis J. Wicker
,
Matthew B. Ammon
,
Derek R. Stratman
(2025).
A Framework for Convective-Scale Observing System Simulation Experiments Using Ensembles
.
Wea. Forecasting, 40
(10), 2147–2157.
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Behnam Bozorgmehr
,
Pete Willemsen
,
Jeremy A. Gibbs
,
Rob Stoll
,
Jae Jin Kim
,
Zachary Patterson
,
Eric R. Pardyjak
(2025).
Improving the Performance of a Reduced-Order Mass-Consistent Model for Urban Environments and Complex Terrain With a Higher-Order Geometrical Representation
.
J. Adv. Model. Earth Syst., 17
(5), 1–39.
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Alan Shapiro
Equal contribution
,
Jeremy A. Gibbs
Equal contribution
(2025).
Revisiting the laminar plume
.
Phys. Fluids, 37
(4), 1–13.
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Fabien Margairaz
,
Balwinder Singh
,
Jeremy A. Gibbs
,
Loren Atwood
,
Eric R. Pardyjak
,
Rob Stoll
(2023).
QES-Plume v1.0: a Lagrangian dispersion model
.
Geosci. Model Dev., 16
(20), 5729–5754.
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John D. Labriola
,
Jeremy A. Gibbs
,
Louis J. Wicker
(2023).
A method for generating a quasi-linear convective system suitable for observing system simulation experiments
.
Geosci. Model Dev., 16
(6), 1779–1799.
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Jeremy A. Gibbs
,
Rob Stoll
,
Scott T. Salesky
(2023).
Inclination Angles of Turbulent Structures in Stably Stratified Boundary Layers
.
Bound.-Layer Meteorol., 186
, 27–41.
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Matthew J. Moody
,
Jeremy A. Gibbs
,
Steven Krueger
,
Derek Mallia
,
Erik R. Pardyjak
,
Adam K. Kochanski
,
Brian N. Bailey
,
Rob Stoll
(2022).
QES-Fire: a dynamically coupled fast-response wildfire model
.
Int. J. Wildland Fire, 31
, 306–325.
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B. Bozorgmehr
,
P. Willemsen
,
Jeremy A. Gibbs
,
R. Stoll
,
J. J. Kim
,
E. Pardyjak
(2021).
Utilizing dynamic parallelism in CUDA to accelerate a 3D red-black successive over relaxation wind-field solver
.
Environ. Model. Softw., 31
, 104958-1–104958-18.
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Rob Stoll
,
Jeremy A. Gibbs
,
Scott T. Salesky
,
William Anderson
,
Marc Calaf
(2020).
Large-Eddy Simulation of the Atmospheric Boundary Layer
.
Bound.-Layer Meteorol., 177
, 541–581.
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DOI
Jeremy A. Gibbs
,
Evgeni Fedorovich
(2020).
Structure functions and structure parameters of velocity fluctuations in numerically simulated atmospheric convective boundary layer flows
.
J. Atmos. Sci., 77
(10), 3619–3630.
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