Dry air in the lower-free troposphere intensifies humid heatwaves
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Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s41561-024-01507-0.pdf
Reference5 articles.
1. Byrne, M. P. & O’Gorman, P. A. Trends in continental temperature and humidity directly linked to ocean warming. Proc. Natl Acad. Sci. USA 115, 4863–4868 (2018). This paper presents the convection-dynamics framework and uses it to explain amplified warming and declining relative humidity over land.
2. Zhang, Y., Held, I. & Fueglistaler, S. Projections of tropical heat stress constrained by atmospheric dynamics. Nat. Geosci. 14, 133–137 (2021). This paper uses the convection-dynamics framework to explain why the rate of increase in moist heat is generally uniform across geographies.
3. Schiro, K. A., Ahmed, F., Giangrande, S. E. & Neelin, J. D. GoAmazon2014/5 campaign points to deep-inflow approach to deep convection across scales. Proc. Natl Acad. Sci. USA 115, 4577–4582 (2018). This paper presents observational evidence for the importance of lower-free tropospheric entrainment to the onset of precipitation.
4. Stevens, B. et al. DYAMOND: the DYnamics of the Atmospheric general circulation Modeled On Non-hydrostatic Domains. Prog. Earth Planet. Sci. 6, 1–17 (2019). This paper introduces the project to develop global storm-resolving models and presents the initial simulation results.
5. Lu, Y.-C. & Romps, D. M. Predicting fatal heat and humidity using the heat index model. J. Appl. Physiol. 134, 649–656 (2023). This paper identifies heat and humidity conditions that present critical threats to human health based on a model that incorporates human physiology.
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