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Record #214428:

Influences of time-dependent precipitation on water mass transformation, heat fluxes, and deep convection in marginal seas / Yuki Yasuda, Michael A. Spall.

Title: Influences of time-dependent precipitation on water mass transformation, heat fluxes, and deep convection in marginal seas / Yuki Yasuda, Michael A. Spall.
Author(s): Yasuda, Yuki.
Spall, Michael A.
Date: 2015.
In: Journal of Physical Oceanography. (2015.), Vol. 45(7) (2015)
Abstract: Examines influences of time-dependent precipitation on heat budgets and water mass transformation in idealised marginal sea, using theoretical and numerical models. Notes that marginal seas, e.g. Labrador, Greenland and Mediterranean seas, are especially important for thermohaline circulation, because they are one of primary origins of deep ocean water. Tests new dynamical system (DS) model, which predicts properties of convective water and strength of meridional overturning circulation as well of magnitude of precipitation required to shut down deep convection.
Notes:

Journal of Physical Oceanography. Vol. 45(7) :1822-1842 (2015).

Keywords: 519.673 -- Modelling.
551.463.6 -- Sea water, thermal properties and heat flux.
551.464.5 -- Salinity.
551.465 -- Oceanography, dynamics.
551.465.45 -- Water masses.
551.577 -- Precipitation.
C -- Oceanography, hydrography and hydrology.
(*3) -- Arctic regions.
(*617) -- Greenland Sea and Fram Strait.
(*620) -- Labrador Sea.
(262) -- Mediterranean.
SPRI record no.: 214428

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100 1# ‡aYasuda, Yuki.
245 10 ‡aInfluences of time-dependent precipitation on water mass transformation, heat fluxes, and deep convection in marginal seas /‡cYuki Yasuda, Michael A. Spall.
260 ## ‡a[S.l.] :‡b[s.n.],‡c2015.
300 ## ‡ap. 1822-1842 :‡bill. (some col.), diags., tables.
500 ## ‡aJournal of Physical Oceanography. Vol. 45(7) :1822-1842 (2015).
520 3# ‡aExamines influences of time-dependent precipitation on heat budgets and water mass transformation in idealised marginal sea, using theoretical and numerical models. Notes that marginal seas, e.g. Labrador, Greenland and Mediterranean seas, are especially important for thermohaline circulation, because they are one of primary origins of deep ocean water. Tests new dynamical system (DS) model, which predicts properties of convective water and strength of meridional overturning circulation as well of magnitude of precipitation required to shut down deep convection.
530 ## ‡aAlso issued online ‡uurn:doi:10.1175/JPO-D-14-0147.1‡uhttps://dx.doi.org/10.1175/JPO-D-14-0147.1
650 07 ‡a519.673 -- Modelling.‡2udc
650 07 ‡a551.463.6 -- Sea water, thermal properties and heat flux.‡2udc
650 07 ‡a551.464.5 -- Salinity.‡2udc
650 07 ‡a551.465 -- Oceanography, dynamics.‡2udc
650 07 ‡a551.465.45 -- Water masses.‡2udc
650 07 ‡a551.577 -- Precipitation.‡2udc
650 07 ‡aC -- Oceanography, hydrography and hydrology.‡2local
651 #7 ‡a(*3) -- Arctic regions.‡2udc
651 #7 ‡a(*617) -- Greenland Sea and Fram Strait.‡2udc
651 #7 ‡a(*620) -- Labrador Sea.‡2udc
651 #7 ‡a(262) -- Mediterranean.‡2udc
700 1# ‡aSpall, Michael A.
773 0# ‡7nnas ‡tJournal of Physical Oceanography. ‡gVol. 45(7) (2015) ‡wSPRI-78712
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917 ## ‡aUnenhanced record from Muscat, imported 2019
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