A change in the cycle of water from dry to wet regions of the globe would have far reaching impact on humanity. As air warms, its capacity to hold water increases at the Clausius-Clapeyron rate (CC, approximately 7% °C−1). Surface ocean salinity observations have suggested the water cycle has amplified at close to CC following recent global warming, a result that was found to be at odds with state-of the art climate models. Here we employ a method based on water mass transformation theory for inferring changes in the water cycle from changes in three-dimensional salinity. Using full depth salinity observations we infer a water cycle amplification of 3.0 ± 1.6% °C−1 over 1950–2010. Climate models agree with observations in terms of a water c...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy in Physi...
The World Ocean is rapidly changing, with global and regional modification of temperature and salini...
Understanding observed changes to the global water cycle is key to predicting future climate changes...
A change in the cycle of water from dry to wet regions of the globe would have far reaching impact o...
Changes in the global water cycle critically impact environmental, agricultural, and energy systems ...
The ocean plays a dominant role in the global water cycle. It is the center of action for global eva...
Author Posting. © American Meteorological Society, 2015. This article is posted here by permission ...
Human influences have likely already impacted the large-scale water cycle but natural variability an...
This thesis aims to use historical and recent global ocean observations to ascertain changes to the ...
The factors governing the rate of change in the amount of atmospheric water vapor are analyzed in si...
The global water cycle leaves an imprint on ocean salinity through evaporation and precipitation. It...
The sea surface salinity (SSS) displays fluctuations that are not solely in response to local air-se...
Millions of people across the globe are already affected by natural variability in the water cycle. ...
Author Posting. © Oceanography Society, 2008. This article is posted here by permission of Oceanogr...
The increase in global-mean precipitation with global-mean temperature (hydrological sensitivity; η)...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy in Physi...
The World Ocean is rapidly changing, with global and regional modification of temperature and salini...
Understanding observed changes to the global water cycle is key to predicting future climate changes...
A change in the cycle of water from dry to wet regions of the globe would have far reaching impact o...
Changes in the global water cycle critically impact environmental, agricultural, and energy systems ...
The ocean plays a dominant role in the global water cycle. It is the center of action for global eva...
Author Posting. © American Meteorological Society, 2015. This article is posted here by permission ...
Human influences have likely already impacted the large-scale water cycle but natural variability an...
This thesis aims to use historical and recent global ocean observations to ascertain changes to the ...
The factors governing the rate of change in the amount of atmospheric water vapor are analyzed in si...
The global water cycle leaves an imprint on ocean salinity through evaporation and precipitation. It...
The sea surface salinity (SSS) displays fluctuations that are not solely in response to local air-se...
Millions of people across the globe are already affected by natural variability in the water cycle. ...
Author Posting. © Oceanography Society, 2008. This article is posted here by permission of Oceanogr...
The increase in global-mean precipitation with global-mean temperature (hydrological sensitivity; η)...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy in Physi...
The World Ocean is rapidly changing, with global and regional modification of temperature and salini...
Understanding observed changes to the global water cycle is key to predicting future climate changes...