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The Effect of the Martian 2018 Global Dust Storm on HDO as Predicted by a Mars Global Climate Model

  • Loïc Rossi
  • , Margaux Vals
  • , Franck Montmessin
  • , François Forget
  • , Ehouarn Millour
  • , Anna Fedorova
  • , Alexander Trokhimovskiy
  • , Oleg Korablev
  • Université Paris-Saclay
  • Université Pierre et Marie Curie
  • Space Research Institute (IKI)

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

14 Citations (Scopus)

Résumé

The deuterium to hydrogen (D/H) ratio is commonly used to investigate the history of water on Mars, yet the mechanisms controlling present-day HDO behavior are poorly understood. Significant variations of the D/H ratio were first predicted on the basis of a 3D global climate model, which were later confirmed by ground-based observations. This behavior, consisting of lower HDO/H2O ratios in the colder regions of Mars, is related to the isotopic fractionation occurring at condensation. We leverage this previous effort and present an updated implementation, using the modern version of the model, that remains in agreement with the older version. We explore the impact of the global dust storm (GDS) that occurred during Martian year 34 (MY34) on HDO. Our simulations indicate that HDO is on average 40% more abundant at 100 km during the MY34 GDS year than during a regular year, with likely large consequences for the escape flux of water that year.

langue originaleAnglais
Numéro d'articlee2020GL090962
journalGeophysical Research Letters
Volume48
Numéro de publication7
Les DOIs
étatPublié - 16 avr. 2021

SDG des Nations Unies

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  1. SDG 13 - Action climatique
    SDG 13 Action climatique

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