Recent changes of relative humidity: regional connections with land and ocean processes

<p>We analyzed changes in surface relative humidity (RH) at the global scale from 1979 to 2014 using both observations and the ERA-Interim dataset. We compared the variability and trends in RH with those of land evapotranspiration and ocean evaporation in moisture source areas across a ran...

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Main Authors: S. M. Vicente-Serrano, R. Nieto, L. Gimeno, C. Azorin-Molina, A. Drumond, A. El Kenawy, F. Dominguez-Castro, M. Tomas-Burguera, M. Peña-Gallardo
Format: Article
Language:English
Published: Copernicus Publications 2018-06-01
Series:Earth System Dynamics
Online Access:https://www.earth-syst-dynam.net/9/915/2018/esd-9-915-2018.pdf
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spelling doaj-c8b837fe8cc745ea881f51b45da12f232020-11-25T01:01:54ZengCopernicus PublicationsEarth System Dynamics2190-49792190-49872018-06-01991593710.5194/esd-9-915-2018Recent changes of relative humidity: regional connections with land and ocean processesS. M. Vicente-Serrano0R. Nieto1L. Gimeno2C. Azorin-Molina3A. Drumond4A. El Kenawy5A. El Kenawy6F. Dominguez-Castro7M. Tomas-Burguera8M. Peña-Gallardo9Instituto Pirenaico de Ecología, Consejo Superior de Investigaciones Científicas (IPE–CSIC), Saragossa, SpainEnvironmental Physics Laboratory, Universidade de Vigo, Ourense, SpainEnvironmental Physics Laboratory, Universidade de Vigo, Ourense, SpainRegional Climate Group, Department of Earth Sciences, University of Gothenburg, Gothenburg, SwedenEnvironmental Physics Laboratory, Universidade de Vigo, Ourense, SpainInstituto Pirenaico de Ecología, Consejo Superior de Investigaciones Científicas (IPE–CSIC), Saragossa, SpainDepartment of Geography, Mansoura University, Mansoura, EgyptInstituto Pirenaico de Ecología, Consejo Superior de Investigaciones Científicas (IPE–CSIC), Saragossa, SpainEstación Experimental Aula Dei, Consejo Superior de Investigaciones Científicas (EEAD-CSIC), Saragossa, SpainInstituto Pirenaico de Ecología, Consejo Superior de Investigaciones Científicas (IPE–CSIC), Saragossa, Spain<p>We analyzed changes in surface relative humidity (RH) at the global scale from 1979 to 2014 using both observations and the ERA-Interim dataset. We compared the variability and trends in RH with those of land evapotranspiration and ocean evaporation in moisture source areas across a range of selected regions worldwide. The sources of moisture for each particular region were identified by integrating different observational data and model outputs into a Lagrangian approach. The aim was to account for the possible role of changes in air temperature over land, in comparison to sea surface temperature (SST), but also the role of land evapotranspiration and the ocean evaporation on RH variability. The results demonstrate that the patterns of the observed trends in RH at the global scale cannot be linked to a particular individual physical mechanism. Our results also stress that the different hypotheses that may explain the decrease in RH under a global warming scenario could act together to explain recent RH trends. Albeit with uncertainty in establishing a direct causality between RH trends and the different empirical moisture sources, we found that the observed decrease in RH in some regions can be linked to lower water supply from land evapotranspiration. In contrast, the empirical relationships also suggest that RH trends in other target regions are mainly explained by the dynamic and thermodynamic mechanisms related to the moisture supply from the oceanic source regions. Overall, while this work gives insights into the connections between RH trends and oceanic and continental processes at the global scale, further investigation is still desired to assess the contribution of both dynamic and thermodynamic factors to the evolution of RH over continental regions.</p>https://www.earth-syst-dynam.net/9/915/2018/esd-9-915-2018.pdf
collection DOAJ
language English
format Article
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author S. M. Vicente-Serrano
R. Nieto
L. Gimeno
C. Azorin-Molina
A. Drumond
A. El Kenawy
A. El Kenawy
F. Dominguez-Castro
M. Tomas-Burguera
M. Peña-Gallardo
spellingShingle S. M. Vicente-Serrano
R. Nieto
L. Gimeno
C. Azorin-Molina
A. Drumond
A. El Kenawy
A. El Kenawy
F. Dominguez-Castro
M. Tomas-Burguera
M. Peña-Gallardo
Recent changes of relative humidity: regional connections with land and ocean processes
Earth System Dynamics
author_facet S. M. Vicente-Serrano
R. Nieto
L. Gimeno
C. Azorin-Molina
A. Drumond
A. El Kenawy
A. El Kenawy
F. Dominguez-Castro
M. Tomas-Burguera
M. Peña-Gallardo
author_sort S. M. Vicente-Serrano
title Recent changes of relative humidity: regional connections with land and ocean processes
title_short Recent changes of relative humidity: regional connections with land and ocean processes
title_full Recent changes of relative humidity: regional connections with land and ocean processes
title_fullStr Recent changes of relative humidity: regional connections with land and ocean processes
title_full_unstemmed Recent changes of relative humidity: regional connections with land and ocean processes
title_sort recent changes of relative humidity: regional connections with land and ocean processes
publisher Copernicus Publications
series Earth System Dynamics
issn 2190-4979
2190-4987
publishDate 2018-06-01
description <p>We analyzed changes in surface relative humidity (RH) at the global scale from 1979 to 2014 using both observations and the ERA-Interim dataset. We compared the variability and trends in RH with those of land evapotranspiration and ocean evaporation in moisture source areas across a range of selected regions worldwide. The sources of moisture for each particular region were identified by integrating different observational data and model outputs into a Lagrangian approach. The aim was to account for the possible role of changes in air temperature over land, in comparison to sea surface temperature (SST), but also the role of land evapotranspiration and the ocean evaporation on RH variability. The results demonstrate that the patterns of the observed trends in RH at the global scale cannot be linked to a particular individual physical mechanism. Our results also stress that the different hypotheses that may explain the decrease in RH under a global warming scenario could act together to explain recent RH trends. Albeit with uncertainty in establishing a direct causality between RH trends and the different empirical moisture sources, we found that the observed decrease in RH in some regions can be linked to lower water supply from land evapotranspiration. In contrast, the empirical relationships also suggest that RH trends in other target regions are mainly explained by the dynamic and thermodynamic mechanisms related to the moisture supply from the oceanic source regions. Overall, while this work gives insights into the connections between RH trends and oceanic and continental processes at the global scale, further investigation is still desired to assess the contribution of both dynamic and thermodynamic factors to the evolution of RH over continental regions.</p>
url https://www.earth-syst-dynam.net/9/915/2018/esd-9-915-2018.pdf
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