Short-period, small-scale gravity waves are frequently observed in nighttime airglow imaging experiments. These waves are often found to be ducted and may be confined to a thin region of altitude in the mesosphere or lower thermosphere. An apparent paradox of high-altitude ducted waves is the nature of the source; it is necessary that a ducted wave be excited in situ or have been able to tunnel into the duct from another atmospheric region. In this paper, analytical and numerical solutions are presented for simple thermally ducted gravity waves that are Doppler-shifted by constant background winds. Using a continuous analytical model, duct dispersion properties are calculated for three case studies. Using a fully nonlinear numerical model, ...
A new 2-D time-dependent model is used to simulate the propagation of an acoustic-gravity wave packe...
[1] A time-dependent and fully nonlinear numerical model is employed to solve the Navier-Stokes equa...
We use a 2-D, nonlinear, time-dependent numerical model to simulate the propagation of wave packets ...
Short-period, small-scale gravity waves are frequently observed in nighttime airglow imaging experim...
[1] Short-period, small-scale gravity waves are frequently observed in nighttime airglow imaging exp...
We report on a numerical study of gravity wave propagation in a pair of ducts located in a region wh...
A numerical full-wave model is used to study the response of the O2 atmospheric airglow to ducted gr...
A new nonlinear and time-dependent model is used to derive the total perturbation energy flux of two...
Numerical simulation results indicate that the breaking of atmospheric gravity waves generated by tr...
A time-dependent and fully nonlinear numerical model is employed to solve the Navier-Stokes equation...
Abundant short-period, small-scale gravity waves have been identified in the mesosphere and lower the...
A new nonlinear and time-dependent model is used to derive the total perturbation energy flux of two...
A new 2-D time-dependent model is used to simulate the propagation of an acoustic-gravity wave packe...
[1] A time-dependent and fully nonlinear numerical model is employed to solve the Navier-Stokes equa...
We use a 2-D, nonlinear, time-dependent numerical model to simulate the propagation of wave packets ...
Short-period, small-scale gravity waves are frequently observed in nighttime airglow imaging experim...
[1] Short-period, small-scale gravity waves are frequently observed in nighttime airglow imaging exp...
We report on a numerical study of gravity wave propagation in a pair of ducts located in a region wh...
A numerical full-wave model is used to study the response of the O2 atmospheric airglow to ducted gr...
A new nonlinear and time-dependent model is used to derive the total perturbation energy flux of two...
Numerical simulation results indicate that the breaking of atmospheric gravity waves generated by tr...
A time-dependent and fully nonlinear numerical model is employed to solve the Navier-Stokes equation...
Abundant short-period, small-scale gravity waves have been identified in the mesosphere and lower the...
A new nonlinear and time-dependent model is used to derive the total perturbation energy flux of two...
A new 2-D time-dependent model is used to simulate the propagation of an acoustic-gravity wave packe...
[1] A time-dependent and fully nonlinear numerical model is employed to solve the Navier-Stokes equa...
We use a 2-D, nonlinear, time-dependent numerical model to simulate the propagation of wave packets ...