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Winds at the Mars 2020 Landing Site. 2. Wind Variability and TurbulenceWind speeds measured by the Mars 2020 Perseverance rover in Jezero crater were fitted as a Weibull distribution. InSight wind data acquired in Elysium Planitia were also used to contextualize observations. Jezero winds were found to be much calmer on average than in previous landing sites, despite the intense aeolian activity observed. However, a great influence of turbulence and wave activity was observed in the wind speed variations, thus driving the probability of reaching the highest wind speeds at Jezero, instead of sustained winds driven by local, regional, or large-scale circulation. The power spectral density of wind speed fluctuations follows a power-law, whose slope deviates depending on the time of day from that predicted considering homogeneous and isotropic turbulence. Daytime wave activity is related to convection cells and smaller eddies in the boundary layer, advected over the crater. The signature of convection cells was also found during dust storm conditions, when prevailing winds were consistent with a tidal drive. Nighttime fluctuations were also intense, suggesting strong mechanical turbulence. Convective vortices were usually involved in rapid wind fluctuations and extreme winds, with variations peaking at 9.2 times the background winds. Transient high wind events by vortex-passages, turbulence, and wave activity could be driving aeolian activity at Jezero. We report the detection of a strong dust cloud of 0.75–1.5 km in length passing over the rover. The observed aeolian activity had major implications for instrumentation, with the wind sensor suffering damage throughout the mission, probably due to flying debris advected by winds.
Document ID
20230001086
Acquisition Source
Goddard Space Flight Center
Document Type
Accepted Manuscript (Version with final changes)
Authors
D. Viúdez-moreiras ORCID
(Centro de Astrobiología Torrejón de Ardoz, Spain)
M. De La Torre ORCID
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
J. Gómez-Elvira
(National Institute for Aerospace Technology Madrid, Spain)
R. D. Lorenz ORCID
(Johns Hopkins University Applied Physics Laboratory North Laurel, Maryland, United States)
V. Apéstigue ORCID
(National Institute for Aerospace Technology Madrid, Spain)
S. Guzewich ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
M. Mischna ORCID
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
R. Sullivan ORCID
(Cornell University Ithaca, New York, United States)
K. Herkenhoff ORCID
(United States Geological Survey Reston, Virginia, United States)
D. Toledo ORCID
(National Institute for Aerospace Technology Madrid, Spain)
M. Lemmon ORCID
(Space Science Institute Boulder, Colorado, United States)
M. Smith ORCID
(Goddard Space Flight Center Greenbelt, Maryland, United States)
C. E. Newman ORCID
(Aeolis Research (United States) Pasadena, California, United States)
A. Sánchez-Lavega ORCID
(University of the Basque Country Leioa, Spain)
J. A. Rodríguez-Manfredi
(Centro de Astrobiología Torrejón de Ardoz, Spain)
M. Richardson
(Aeolis Research (United States) Pasadena, California, United States)
R. Hueso ORCID
(University of the Basque Country Leioa, Spain)
A. M. Harri
(Finnish Meteorological Institute Helsinki, Finland)
L. Tamppari ORCID
(Jet Propulsion Lab La Cañada Flintridge, California, United States)
I. Arruego ORCID
(National Institute for Aerospace Technology Madrid, Spain)
J. Bell
(Arizona State University Tempe, Arizona, United States)
Date Acquired
January 23, 2023
Publication Date
December 5, 2022
Publication Information
Publication: Journal of Geophysical Research: Planets
Publisher: Wiley
Volume: 127
Issue: 12
Issue Publication Date: December 1, 2022
ISSN: 2169-9097
e-ISSN: 2169-9100
Subject Category
Lunar and Planetary Science and Exploration
Funding Number(s)
WBS: 588733.04.04
CONTRACT_GRANT: 80MSFC20F0146
CONTRACT_GRANT: 80NM0018D0004P00002
CONTRACT_GRANT: J-090029
CONTRACT_GRANT: J-090011
CONTRACT_GRANT: 1516826
CONTRACT_GRANT: J-090015
CONTRACT_GRANT: J-090009
CONTRACT_GRANT: RTI2018-098728-B-C31
CONTRACT_GRANT: IT1742-22
CONTRACT_GRANT: PID2019-109467GB-I00
CONTRACT_GRANT: DV2020-ATM-A01
CONTRACT_GRANT: 80NM0018D0004
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
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