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Jin, F.‐F.
Collins, M.
Timmermann, A.
Jin, F.‐F.
Collins, M.
author Timmermann, A.
Jin, F.‐F.
Collins, M.
spellingShingle Timmermann, A.
Jin, F.‐F.
Collins, M.
Geophysical Research Letters
Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
General Earth and Planetary Sciences
Geophysics
author_sort timmermann, a.
spelling Timmermann, A. Jin, F.‐F. Collins, M. 0094-8276 1944-8007 American Geophysical Union (AGU) General Earth and Planetary Sciences Geophysics http://dx.doi.org/10.1029/2004gl019442 <jats:p>The annual cycle is one of the most important components of the global climate system Yet little attention has been paid to the response of the equatorial annual cycle to anthropogenic climate change. Here we present results from a global climate model with high tropical resolution that simulates a strong intensification of the annual cycle in the tropical Pacific in response to increased greenhouse gas concentrations. This sensitivity of the tropical annual cycle to greenhouse warming can be explained in terms of tropical ocean‐atmosphere feedbacks. A possible amplification of the tropical annual cycle is expected to have also profound ecological and societal impacts.</jats:p> Intensification of the annual cycle in the tropical Pacific due to greenhouse warming Geophysical Research Letters
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title Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_unstemmed Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_full Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_fullStr Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_full_unstemmed Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_short Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_sort intensification of the annual cycle in the tropical pacific due to greenhouse warming
topic General Earth and Planetary Sciences
Geophysics
url http://dx.doi.org/10.1029/2004gl019442
publishDate 2004
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description <jats:p>The annual cycle is one of the most important components of the global climate system Yet little attention has been paid to the response of the equatorial annual cycle to anthropogenic climate change. Here we present results from a global climate model with high tropical resolution that simulates a strong intensification of the annual cycle in the tropical Pacific in response to increased greenhouse gas concentrations. This sensitivity of the tropical annual cycle to greenhouse warming can be explained in terms of tropical ocean‐atmosphere feedbacks. A possible amplification of the tropical annual cycle is expected to have also profound ecological and societal impacts.</jats:p>
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author Timmermann, A., Jin, F.‐F., Collins, M.
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description <jats:p>The annual cycle is one of the most important components of the global climate system Yet little attention has been paid to the response of the equatorial annual cycle to anthropogenic climate change. Here we present results from a global climate model with high tropical resolution that simulates a strong intensification of the annual cycle in the tropical Pacific in response to increased greenhouse gas concentrations. This sensitivity of the tropical annual cycle to greenhouse warming can be explained in terms of tropical ocean‐atmosphere feedbacks. A possible amplification of the tropical annual cycle is expected to have also profound ecological and societal impacts.</jats:p>
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spelling Timmermann, A. Jin, F.‐F. Collins, M. 0094-8276 1944-8007 American Geophysical Union (AGU) General Earth and Planetary Sciences Geophysics http://dx.doi.org/10.1029/2004gl019442 <jats:p>The annual cycle is one of the most important components of the global climate system Yet little attention has been paid to the response of the equatorial annual cycle to anthropogenic climate change. Here we present results from a global climate model with high tropical resolution that simulates a strong intensification of the annual cycle in the tropical Pacific in response to increased greenhouse gas concentrations. This sensitivity of the tropical annual cycle to greenhouse warming can be explained in terms of tropical ocean‐atmosphere feedbacks. A possible amplification of the tropical annual cycle is expected to have also profound ecological and societal impacts.</jats:p> Intensification of the annual cycle in the tropical Pacific due to greenhouse warming Geophysical Research Letters
spellingShingle Timmermann, A., Jin, F.‐F., Collins, M., Geophysical Research Letters, Intensification of the annual cycle in the tropical Pacific due to greenhouse warming, General Earth and Planetary Sciences, Geophysics
title Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_full Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_fullStr Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_full_unstemmed Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_short Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
title_sort intensification of the annual cycle in the tropical pacific due to greenhouse warming
title_unstemmed Intensification of the annual cycle in the tropical Pacific due to greenhouse warming
topic General Earth and Planetary Sciences, Geophysics
url http://dx.doi.org/10.1029/2004gl019442