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contributor authorAemisegger, Franziska
contributor authorPapritz, Lukas
date accessioned2019-09-19T10:09:51Z
date available2019-09-19T10:09:51Z
date copyright6/19/2018 12:00:00 AM
date issued2018
identifier otherjcli-d-17-0591.1.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4262253
description abstractAbstractThis paper presents an object-based, global climatology (1979?2014) of strong large-scale ocean evaporation (SLOE) and its associated climatic properties. SLOE is diagnosed using an ?atmospheric moisture uptake efficiency? criterion related to the ratio of surface evaporation and integrated water vapor content in the near-surface atmosphere. The chosen Eulerian identification procedure focuses on events that strongly contribute to the available near-surface atmospheric humidity. SLOE is particularly frequent along the warm ocean western boundary currents, downstream of large continental areas, and at the sea ice edge in polar regions with frequent cold-air outbreaks. Furthermore, wind-driven SLOE occurs in regions with topographically enforced winds. On a global annual average, SLOE occurs only 6% of the time but explains 22% of total ocean evaporation. An analysis of the past history and fate of air parcels involved in cold season SLOE in the North Atlantic and south Indian Oceans shows that cold-air advection is the main mechanism that induces these events. Extratropical cyclones thereby play an important role in setting the necessary equatorward synoptic flow. Consequently, the interannual variability of SLOE associated with the North Atlantic Oscillation and the southern annular mode reveals a very high sensitivity of SLOE with respect to the location of the storm tracks. This study highlights the strong link between transient synoptic events and the spatiotemporal variability in ocean evaporation patterns, which cannot be deduced from thermodynamic steady-state and climate mean state considerations alone.
publisherAmerican Meteorological Society
titleA Climatology of Strong Large-Scale Ocean Evaporation Events. Part I: Identification, Global Distribution, and Associated Climate Conditions
typeJournal Paper
journal volume31
journal issue18
journal titleJournal of Climate
identifier doi10.1175/JCLI-D-17-0591.1
journal fristpage7287
journal lastpage7312
treeJournal of Climate:;2018:;volume 031:;issue 018
contenttypeFulltext


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