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Global characteristics of the small-scale gravity wave (GW) field in the Martian atmosphere obtained from a high-resolution general circulation model (GCM) are presented for the first time. The simulated GW-induced temperature variances are…

Earth and Planetary Astrophysics · Physics 2015-11-03 Takeshi Kuroda , Alexander S. Medvedev , Erdal Yiğit , Paul Hartogh

The impact of gravity waves (GW) on diurnal tides and the global circulation in the middle/upper atmosphere of Mars is investigated using a General Circulation Model (GCM). We have implemented a stochastic parameterization of non-orographic…

Earth and Planetary Astrophysics · Physics 2020-02-04 G. Gilli , F. Forget , A. Spiga , T. Navarro , E. Millour , L. Montabone , A. Kleinböhl , D. M. Kass , D. J. McCleese , J. T. Schofield

Gravity waves (GWs) are a fundamental driver of circulation, tracer transport, and mixing in the middle and upper atmosphere, but their treatment in global circulation models remains incomplete. In particular, standard parameterizations…

We study the dynamical and thermal roles of internal gravity waves generated in the troposphere and above using the Coupled Middle Atmosphere Thermosphere-2 General Circulation Model. This model incorporates the whole atmosphere nonlinear…

First high-altitude observations of gravity wave (GW)-induced CO$_2$ density perturbations in the Martian thermosphere retrieved from NASA's NGIMS instrument on board the MAVEN satellite are presented and interpreted using the extended GW…

Earth and Planetary Astrophysics · Physics 2016-02-17 Erdal Yiğit , Scott L. England , Guiping Liu , Alexander S. Medvedev , Paul R. Mahaffy , Takeshi Kuroda , Bruce M. Jakosky

This paper presents a study of the global medium-scale (scales<620 km) gravity wave (GW) activity (in terms of zonal wind variance) and its seasonal, local time and longitudinal variations by employing the enhanced-resolution (~50 km) Whole…

We present the results of studies of acoustic-gravity waves (AGWs) in the upper atmosphere of the Earth. The work has been mainly aimed at studying the peculiarities of atmospheric AGWs in the atmosphere based on the theoretical models…

Atmospheric and Oceanic Physics · Physics 2023-08-04 O. K. Cheremnykh , A. K. Fedorenko , E. I. Kryuchkov , Yu. O. Klymenko , I. T. Zhuk

Conventional gravity-wave (GW) parameterizations neglect three aspects of GW dynamics. Instead of momentum and entropy fluxes they use Eliassen-Palm fluxes, thereby neglecting the possibility that resolved flow are not in geostrophic and…

Atmospheric and Oceanic Physics · Physics 2025-09-29 Tobias Kühner , Georg Sebastian Voelker , Ulrich Achatz

Effects of subgrid-scale gravity waves (GWs) on the diurnal migrating tides are investigated from the mesosphere to the upper thermosphere for September equinox conditions, using a general circulation model coupled with the extended…

Atmospheric and Oceanic Physics · Physics 2017-04-26 Erdal Yiğit , Alexander S. Medvedev

By measuring the regular oscillations of the density of CO$_{2}$ in the upper atmosphere (between 120 and 190~km), the mass spectrometer MAVEN/NGIMS (Atmosphere and Volatile EvolutioN/Neutral Gas Ion Mass Spectrometer) reveals the local…

Earth and Planetary Astrophysics · Physics 2019-09-24 M. Vals , A. Spiga , F. Forget , E. Millour , L. Montabone , F. Lott

Atmospheric gravity waves (AGWs) are low-frequency, buoyancy-driven waves that are generated by turbulent convection and propagate obliquely throughout the solar atmosphere. Their proposed energy contribution to the lower solar atmosphere…

Solar and Stellar Astrophysics · Physics 2023-07-20 Oana Vesa , Jason Jackiewicz , Kevin Reardon

Atmospheric gravity (buoyancy) waves (GWs) are of great importance for the energy and momentum budget of all planetary atmospheres. Propagating upward waves carry energy and momentum from the lower atmosphere to thermospheric altitudes and…

Earth and Planetary Astrophysics · Physics 2021-10-27 Erdal Yiğit , Alexander S. Medvedev , Paul Hartogh

Atmospheric gravity waves (AGWs) are buoyancy-driven waves excited by turbulent convection and contribute to the dynamics and energy transport of the lower solar atmosphere. We present high-resolution, multi-wavelength observations from the…

Solar and Stellar Astrophysics · Physics 2025-09-25 Oana Vesa , Julio Morales , Jason Jackiewicz , Gangadharan Vigeesh , Kevin Reardon

Gravity waves are generated by turbulent subsurface convection overshooting or penetrating locally into a stably stratified medium. While propagating energy upwards, their characteristic negative phase shift over height is a well-recognized…

Solar and Stellar Astrophysics · Physics 2023-07-26 Hirdesh Kumar , Brajesh Kumar , S. P. Rajaguru

Carbon dioxide (CO$_2$) ice clouds have been routinely observed in the middle atmosphere of Mars. However, there are still uncertainties concerning physical mechanisms that control their altitude, geographical, and seasonal distributions.…

Earth and Planetary Astrophysics · Physics 2018-12-26 Erdal Yiğit , Alexander S. Medvedev , Paul Hartogh

We present the first general circulation model simulations that quantify and reproduce patches of extremely cold air required for CO$_2$ condensation and cloud formation in the Martian mesosphere. They are created by subgrid-scale gravity…

Earth and Planetary Astrophysics · Physics 2015-08-06 Erdal Yiğit , Alexander S. Medvedev , Paul Hartogh

In this second paper of the series on internal gravity waves (IGWs), we present a study of the generation and propagation of IGWs in a model solar atmosphere with diverse magnetic conditions. A magnetic field free, and three magnetic models…

Solar and Stellar Astrophysics · Physics 2019-02-27 G. Vigeesh , M. Roth , O. Steiner , J. Jackiewicz

Simulations with the Max Planck Institute Martian general circulation model for Martian years 28 and 34 reveal details of the water "pump" mechanism and the role of gravity wave (GW) forcing. Water is advected to the upper atmosphere mainly…

Earth and Planetary Astrophysics · Physics 2022-01-14 Dmitry S. Shaposhnikov , Alexander S. Medvedev , Alexander V. Rodin , Erdal Yiğit , Paul Hartogh

Parametrizations for internal gravity waves in atmospheric models are traditionally subject to a number of simplifications. Most notably, they rely on both neglecting wave propagation and advection in the horizontal direction (single-column…

Fluid Dynamics · Physics 2024-02-28 Georg S. Voelker , Gergely Bölöni , Young-Ha Kim , Günther Zängl , Ulrich Achatz

Variations in zonal surface temperature gradients and zonally asymmetric tropical overturning circulations (Walker circulations) are examined over a wide range of climates simulated with an idealized atmospheric general circulation model…

Atmospheric and Oceanic Physics · Physics 2015-05-19 Timothy M. Merlis , Tapio Schneider
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