Land Surface Influence on Convective Available Potential Energy (CAPE) Change during Interstorms
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hydr-JHM-D-22-0191.1 (1).pdf
Description
Published version
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1.93 MB
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Author(s) • •
Zhang, Lily N
Short Gianotti, Daniel J
Entekhabi, Dara
Date Issued
August 28, 2023
Journal
Journal of Hydrometeorology
Publisher
American Meteorological Society
Citation
Zhang, L. N., D. J. Short Gianotti, and D. Entekhabi, 2023: Land Surface Influence on Convective Available Potential Energy (CAPE) Change during Interstorms. J. Hydrometeor., 24, 1365–1376.
Version
Final published version
Abstract
Changes in surface water and energy balance can influence weather through interactions between the land and lower atmosphere. In convecting atmospheres, increases in convective available potential energy (CAPE) at the base of the column are driven by surface turbulent fluxes and can lead to precipitation. Using two global satellite datasets, we analyze the impact of surface energy balance partitioning on convective development by tracking CAPE over soil moisture drydowns (interstorms) during the summer, when land–atmosphere coupling is strongest. Our results show that the sign and magnitude of CAPE development during summertime drydowns depends on regional hydroclimate and initial soil moisture content. On average, CAPE increases between precipitation events over humid regions (e.g., the eastern United States) and decreases slightly over arid regions (e.g., the western United States). The soil moisture content at the start of a drydown was found to only impact CAPE evolution over arid regions, leading to greater decreases in CAPE when initial soil moisture content was high. The effect of these factors on CAPE can be explained by their influence principally on surface evaporation, demonstrating the importance of evaporative controls on CAPE and providing a basis for understanding the soil moisture–precipitation relationship, as well as land–atmosphere interaction as a whole.
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DOI of Published Version
https://doi.org/10.1175/JHM-D-22-0191.1