In this paper, we simulate an observed mountain wave event over central Europe and investigate the subsequent generation, propagation, phase speeds and spatial scales, and momentum deposition of secondary waves under three different tidal wind conditions. We find the mountain wave breaks just below the lowest critical level in the mesosphere. As the mountain wave breaks, it extends outwards along the phases and fluid associated with the breaking flows downstream of its original location by 500–1,000 km. The breaking generates a broad range of secondary waves with horizontal scales ranging from the mountain wave instability scales (20–300 km), to multiples of the mountain wave packet scale (420 km+) and phase speeds from 40 to 150 m/s in the...
Planetary waves disturbed the hitherto stable Arctic stratospheric polar vortex in the middle of Jan...
A 2D nonlinear, compressible model is used to simulate the acoustic-gravity wave (AGW, i.e., encompa...
Two problems in mesoscale wave dynamics are addressed: (i) wave-turbulence interaction in a breaking...
A strong mountain wave, observed over Northern European on the 12th Jan 2016, is simulated in 2D und...
A strong mountain wave, observed over Central Europe on 12 January 2016, is simulated in 2D under tw...
A strong mountain wave, observed over Central Europe on the 12th Jan 2016, is simulated in 2D under ...
The authors propose that the body force that accompanies wave breaking is potentially an important l...
Multiple events during the Deep Propagating Gravity Wave Experiment measurement program revealed mou...
Understanding of the space-atmosphere interaction region spanning from 60 km to 500 km altitude is b...
This study investigates the fundamental processes involved in the severe Mistral’s windstorm occurri...
Two mountain wave events, which occurred over northern Scandinavia in December 2013 are analysed by ...
A 2-D nonlinear compressible model is used to simulate a large-amplitude, multiscale mountain wave e...
Multiple events during the Deep Propagating Gravity Wave Experiment measurement program revealed mou...
A 2-D nonlinear compressible model is used to simulate a large-amplitude, multiscale mountain wave e...
Weak cross‐mountain flow over the New Zealand South Island on 21 June 2014 during the Deep Propagati...
Planetary waves disturbed the hitherto stable Arctic stratospheric polar vortex in the middle of Jan...
A 2D nonlinear, compressible model is used to simulate the acoustic-gravity wave (AGW, i.e., encompa...
Two problems in mesoscale wave dynamics are addressed: (i) wave-turbulence interaction in a breaking...
A strong mountain wave, observed over Northern European on the 12th Jan 2016, is simulated in 2D und...
A strong mountain wave, observed over Central Europe on 12 January 2016, is simulated in 2D under tw...
A strong mountain wave, observed over Central Europe on the 12th Jan 2016, is simulated in 2D under ...
The authors propose that the body force that accompanies wave breaking is potentially an important l...
Multiple events during the Deep Propagating Gravity Wave Experiment measurement program revealed mou...
Understanding of the space-atmosphere interaction region spanning from 60 km to 500 km altitude is b...
This study investigates the fundamental processes involved in the severe Mistral’s windstorm occurri...
Two mountain wave events, which occurred over northern Scandinavia in December 2013 are analysed by ...
A 2-D nonlinear compressible model is used to simulate a large-amplitude, multiscale mountain wave e...
Multiple events during the Deep Propagating Gravity Wave Experiment measurement program revealed mou...
A 2-D nonlinear compressible model is used to simulate a large-amplitude, multiscale mountain wave e...
Weak cross‐mountain flow over the New Zealand South Island on 21 June 2014 during the Deep Propagati...
Planetary waves disturbed the hitherto stable Arctic stratospheric polar vortex in the middle of Jan...
A 2D nonlinear, compressible model is used to simulate the acoustic-gravity wave (AGW, i.e., encompa...
Two problems in mesoscale wave dynamics are addressed: (i) wave-turbulence interaction in a breaking...