2022
DOI: 10.5194/angeo-40-359-2022
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Determination of tropical belt widening using multiple GNSS radio occultation measurements

Abstract: Abstract. In the last decades, several studies reported the tropics' expansion, but the rates of expansion are widely different. In this paper, data of 12 global navigation satellite systems radio occultation (GNSS-RO) missions from June 2001 to November 2020 with high resolution were used to investigate the possible widening of the tropical belt along with the probable drivers and impacts in both hemispheres. Applying both lapse rate tropopause (LRT) and cold point tropopause (CPT) definitions, the global tro… Show more

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Cited by 5 publications
(1 citation statement)
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“…However, the N 2 O increase in the lowermost stratosphere (below 70 hPa) over the Tropics and the NH is not significant in ACE‐FTS, contrary to the model simulations. This difference could be related to the stronger trends in the tropopause rise in the models: around 50 m/decade in CCMs (including WACCM) and ERA5 (Darrag et al., 2022 ; Pisoft et al., 2021 ) compared to the observations (around 35 m/decade, Darrag et al., 2022 ) when using the tropopause definition from the World Meteorological Organization.…”
Section: Global N 2 O Linear Trendsmentioning
confidence: 96%
“…However, the N 2 O increase in the lowermost stratosphere (below 70 hPa) over the Tropics and the NH is not significant in ACE‐FTS, contrary to the model simulations. This difference could be related to the stronger trends in the tropopause rise in the models: around 50 m/decade in CCMs (including WACCM) and ERA5 (Darrag et al., 2022 ; Pisoft et al., 2021 ) compared to the observations (around 35 m/decade, Darrag et al., 2022 ) when using the tropopause definition from the World Meteorological Organization.…”
Section: Global N 2 O Linear Trendsmentioning
confidence: 96%