Coupling hotspots: distinguishing between positive and negative land-atmosphere interaction

Fuente: arXiv
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Main Authors: Yin, Jun, Porporato, Amilcare
Format: Preprint
Published: 2024
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author Yin, Jun
Porporato, Amilcare
author_facet Yin, Jun
Porporato, Amilcare
contents Understanding the complex interactions between land surface and atmosphere is essential to improve weather and climate predictions. Various numerical experiments have suggested that regions of strong coupling strength (hotspots) are located in the transitional climate zones. However, atmospheric processes in these hotspots are found to have different responses to the perturbation of surface properties. Here we establish analytical relationships to identify key role of soil moisture variances in controlling the coupling hotspots. Using the most recent numerical experiments, we find different signs of feedback in two such hotspots, suggesting the coupling can either reinforce or attenuate persistent extreme climates. We further uncover new coupling hotspots in regions where precipitation is highly sensitive to soil moisture perturbation. Our results highlight the importance of both signs and magnitudes of land-atmosphere interactions over extensive regions, where the ecosystems and communities are particularly vulnerable to the extreme climate events.
format Preprint
id arxiv_https___arxiv_org_abs_2412_03049
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Coupling hotspots: distinguishing between positive and negative land-atmosphere interaction
Yin, Jun
Porporato, Amilcare
Atmospheric and Oceanic Physics
Understanding the complex interactions between land surface and atmosphere is essential to improve weather and climate predictions. Various numerical experiments have suggested that regions of strong coupling strength (hotspots) are located in the transitional climate zones. However, atmospheric processes in these hotspots are found to have different responses to the perturbation of surface properties. Here we establish analytical relationships to identify key role of soil moisture variances in controlling the coupling hotspots. Using the most recent numerical experiments, we find different signs of feedback in two such hotspots, suggesting the coupling can either reinforce or attenuate persistent extreme climates. We further uncover new coupling hotspots in regions where precipitation is highly sensitive to soil moisture perturbation. Our results highlight the importance of both signs and magnitudes of land-atmosphere interactions over extensive regions, where the ecosystems and communities are particularly vulnerable to the extreme climate events.
title Coupling hotspots: distinguishing between positive and negative land-atmosphere interaction
topic Atmospheric and Oceanic Physics
url https://arxiv.org/abs/2412.03049