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On the parcel method and the baroclinic wedge of instability
E. Heifetz
*
,
P. Alpert
, A. Da Silva
*
Corresponding author for this work
School of the Environment and Earth Sciences
NASA Goddard Space Flight Center
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Scopus citations
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Keyphrases
Baroclinic
100%
Buoyancy
100%
Heat Flux
66%
Pressure Gradient Force
66%
Force Perturbation
66%
Temperature Difference
33%
Kinetic Energy
33%
Energy Growth
33%
Synoptic Scale
33%
Instability Mechanism
33%
Baroclinic Instability
33%
Vertical Pressure Gradients
33%
Buoyancy Force
33%
Meridional Heat Flux
33%
Isentrope
33%
Secondary Circulation
33%
Vertical Heat Flux
33%
Instantaneous Displacement
33%
Engineering
Heat Flux
100%
Normal Modes
50%
Pressure Gradient
50%
Energy Engineering
25%
Mode Solution
25%
Instability Mechanism
25%
Buoyancy Force
25%
Baroclinic Instability
25%
Earth and Planetary Sciences
Heat Flux
100%
Pressure Gradient
50%
Kinetic Energy
25%
Baroclinic Instability
25%
Isentrope
25%