Sign Up to like & get
recommendations!
0
Published in 2017 at "Climate Dynamics"
DOI: 10.1007/s00382-017-3629-6
Abstract: The high-latitude climate system contains complicated, but largely veiled physical feedback processes. Climate predictions remain uncertain, especially for the Northern High Latitudes (NHL; north of 60°N), and observational constraint on climate modeling is vital. This…
read more here.
Keywords:
northern high;
high latitudes;
surface;
feedback ... See more keywords
Sign Up to like & get
recommendations!
1
Published in 2018 at "Journal of Geophysical Research"
DOI: 10.1029/2018jd028401
Abstract: Observational and model data are used to study the radiative feedbacks during the El Niño–Southern Oscillation (ENSO) cycle. We extend the previous works by analyzing the feedbacks with respect to not only top-of-atmosphere (TOA) but…
read more here.
Keywords:
feedback enso;
cycle observations;
enso cycle;
cycle ... See more keywords
Sign Up to like & get
recommendations!
1
Published in 2021 at "Geophysical Research Letters"
DOI: 10.1029/2021gl093302
Abstract: In most fully coupled climate models, the net radiative feedback magnitude decreases with time after abruptly quadrupling CO2. Hypotheses have been raised to explain the time dependence of radiative feedbacks, including the influence from surface…
read more here.
Keywords:
time;
southern ocean;
heat;
surface ... See more keywords
Sign Up to like & get
recommendations!
0
Published in 2024 at "Geophysical Research Letters"
DOI: 10.1029/2024gl109143
Abstract: Anomalous tropical longwave cloud‐radiative heating of the atmosphere is generated when convective precipitation occurs, which plays an important role in the dynamics of tropical disturbances. Defining the observed cloud‐radiative feedback as the reduction of top‐of‐atmosphere…
read more here.
Keywords:
radiative feedback;
longwave cloud;
precipitation;
precipitation data ... See more keywords
Sign Up to like & get
recommendations!
0
Published in 2024 at "Geophysical Research Letters"
DOI: 10.1029/2024gl109180
Abstract: Over‐estimation of summer precipitation over the Tibetan Plateau (TP) is a well‐known and persistent problem in most climate models. This study demonstrates the impact of a Gaussian Probability Density Function cloud fraction scheme on rainfall…
read more here.
Keywords:
tibetan plateau;
radiative feedback;
wet bias;
large scale ... See more keywords