Total wave heating is the sum of the convergence of the sensible heat flux and the divergence of the viscous flux of wave kinetic energy. Numerical simulations, using a full-wave model of the viscous damping of atmospheric gravity waves propagating in a nonisothermal atmosphere, are carried out to explore the relative contributions of these sources of wave heating as a function of wave properties and altitude. It is shown that the sensible heat flux always dominates in the lower thermosphere, giving a lower region of heating and an upper stronger region of cooling. The heating due to the divergence of the viscous flux of kinetic energy is significant only for fast waves (horizontal phase speed greater than about 120 m s¯¹). The faster the w...
The response to wave forcing of finite duration comprises a transient forerunner and the steady stat...
The thermosphere is diffusively separated and behaves as a multiconstituent gas wherein individual s...
International audienceIt is commonly believed that cumulus convection preferentially generates gravi...
Total wave heating is the sum of the convergence of the sensible heat flux and the divergence of the...
Upward propagating acoustic waves heat the atmosphere at essentially all heights due to effects of v...
A numerical model is used to study the dissipation in the thermosphere of upward propagating acousti...
[1] Upward propagating acoustic waves heat the atmosphere at essentially all heights due to effects ...
A full-wave propagation model was developed that describes the propagation of gravity waves from the...
[1] A gravity wave anelastic dispersion relation is derived that includes molecular viscosity and th...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95637/1/grl26003.pd
We investigate gravity-wave-induced variations in exothermic heating in the OH nightglow region at a...
Gusty flow over rough terrain is likely to be a significant source of fast gravity waves and acousti...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95256/1/jgra20438.pd
The influence of surface skin friction and a specific type of heating on the stability of baroclinic...
Gravity waves not subject to breaking or filtering will dissipate due to viscosity and thermal condu...
The response to wave forcing of finite duration comprises a transient forerunner and the steady stat...
The thermosphere is diffusively separated and behaves as a multiconstituent gas wherein individual s...
International audienceIt is commonly believed that cumulus convection preferentially generates gravi...
Total wave heating is the sum of the convergence of the sensible heat flux and the divergence of the...
Upward propagating acoustic waves heat the atmosphere at essentially all heights due to effects of v...
A numerical model is used to study the dissipation in the thermosphere of upward propagating acousti...
[1] Upward propagating acoustic waves heat the atmosphere at essentially all heights due to effects ...
A full-wave propagation model was developed that describes the propagation of gravity waves from the...
[1] A gravity wave anelastic dispersion relation is derived that includes molecular viscosity and th...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95637/1/grl26003.pd
We investigate gravity-wave-induced variations in exothermic heating in the OH nightglow region at a...
Gusty flow over rough terrain is likely to be a significant source of fast gravity waves and acousti...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95256/1/jgra20438.pd
The influence of surface skin friction and a specific type of heating on the stability of baroclinic...
Gravity waves not subject to breaking or filtering will dissipate due to viscosity and thermal condu...
The response to wave forcing of finite duration comprises a transient forerunner and the steady stat...
The thermosphere is diffusively separated and behaves as a multiconstituent gas wherein individual s...
International audienceIt is commonly believed that cumulus convection preferentially generates gravi...