Stratosphere-Troposphere Coupling During Extreme Weather Change in Alaska in January-February 1989
Тип публікації :
Препринт
Дата випуску :
14 січня 2026 р.
Автор(и) :
Ruixian Yu
Oleksandr Evtushevsky
Yu Shi
Gennadi Milinevsky
Andrew Klekociuk
Asen Grytsai
Yuliia Yukhymchuk
eKNUTSHIR URL :
Цитування :
[APA 7] Ruixian, Y., Oleksandr, E., Yu, S., Gennadi, M., Andrew, K., Asen, G., & Yuliia, Y. (2026). Stratosphere-Troposphere Coupling During Extreme Weather Change in Alaska in January-February 1989. https://doi.org/10.22541/essoar.176840806.69736374/v1
[ДСТУ] Stratosphere-Troposphere Coupling During Extreme Weather Change in Alaska in January-February 1989 / Y. Ruixian та ін. 2026. DOI: 10.22541/essoar.176840806.69736374/v1 (дата звернення: 11.09.2026).
We analyze extreme cold and warm weather events in Alaska during January–February 1989, first described in 1990. Unlike previous studies focused on tropospheric processes, we compare contrasting surface temperatures, including stratospheric variability. Total ozone, zonal and meridional winds, sea level pressure, tropopause pressure based on reanalysis data, and observed temperature are considered. Relationships between abrupt surface temperature changes and atmospheric variables were established based on changes in their geographic and vertical distributions and linear correlation estimates. On the coldest day, 25 January (–43°C at Barrow, northernmost Alaska), an anomalous increase in total ozone over Alaska, accompanied by stratospheric warming, transformation of the vertical temperature profile, and tropopause descent, was associated with the formation of a temperature minimum of –40°C to –50°C in the polar troposphere. That suggests that areas with extremely high total ozone may indicate strong surface cooling in the polar region. The lack of a significant sea level pressure anomaly and weak surface winds in Barrow imply a relatively smaller tropospheric contribution to the severe cooling compared to the stratosphere. The anomalous warming in Barrow on 6 January (–8°C) and 4 February (–3°C) occurred due to the advection of warm air by southerly flows associated with distant cyclonic and anticyclonic circulation systems. Among the parameters analyzed, surface temperature at Barrow was strongly correlated with total ozone (r = –0.74) and with surface v-wind (r = 0.61), highlighting the important role of the stratosphere and surface meridional wind in local weather variation during this period.
Якщо не вказано інше, ця робота розповсюджується на умовах ліцензії Attribution-NonCommercial 4.0 International

