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Development of boundary layer rolls from dynamic instabilities
D. J. Stensrud
, H. N. Shirer
Meteorology and Atmospheric Science
Research output
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Contribution to journal
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Article
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peer-review
22
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Keyphrases
Angle Ratio
50%
Aspect Ratio
50%
Atmospheric Boundary Layer
100%
Background Wind
50%
Boundary Layer
100%
Dynamic Instability
100%
Eddies
50%
Flow Model
50%
Fourier Coefficients
50%
Height-dependent
50%
Inflection Point
100%
Instability Mechanism
50%
Large Animal Model
50%
Orientation Angle
50%
Reynolds number
50%
Simple Analytical Model
50%
Three-dimensional (3D)
50%
Wind Profile
100%
Engineering
Analytical Model
33%
Angle of Orientation
33%
Aspect Ratio
33%
Boundary Layer
100%
Dynamic Instability
100%
Fourier Coefficient
33%
Inflection Point
66%
Instability Mechanism
33%
Reynolds' Number
33%
Rotational
33%
Mathematics
Aspect-Ratio
33%
Boundary Layer
100%
Fourier Coefficient
33%
Inflection Point
66%
Linear Models
33%
Observed Value
33%
Polynomial
33%
Reynolds Number
33%
Earth and Planetary Sciences
Boundary Layer
100%
Inflection Point
66%
Reynolds Number
33%
Wind Profile
100%