C. S. Meinen
National Oceanic and Atmospheric Administration
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Journal of Climate | 2011
William E. Johns; Molly O. Baringer; Lisa M. Beal; S. A. Cunningham; Torsten Kanzow; Harry L. Bryden; Joël J.-M. Hirschi; Jochem Marotzke; C. S. Meinen; B. Shaw; Ruth G. Curry
Continuous estimates of the oceanic meridional heat transport in the Atlantic are derived from the Rapid Climate Change–Meridional Overturning Circulation (MOC) and Heatflux Array (RAPID–MOCHA) observing system deployed along 26.5°N, for the period from April 2004 to October 2007. The basinwide meridional heat transport (MHT) is derived by combining temperature transports (relative to a common reference) from 1) the Gulf Stream in the Straits of Florida; 2) the western boundary region offshore of Abaco, Bahamas; 3) the Ekman layer [derived from Quick Scatterometer (QuikSCAT) wind stresses]; and 4) the interior ocean monitored by “endpoint” dynamic height moorings. The interior eddy heat transport arising from spatial covariance of the velocity and temperature fields is estimated independently from repeat hydrographic and expendable bathythermograph (XBT) sections and can also be approximated by the array. n nThe results for the 3.5 yr of data thus far available show a mean MHT of 1.33 ± 0.40 PW for 10-day-averaged estimates, on which time scale a basinwide mass balance can be reasonably assumed. The associated MOC strength and variability is 18.5 ± 4.9 Sv (1 Sv ≡ 106 m3 s−1). The continuous heat transport estimates range from a minimum of 0.2 to a maximum of 2.5 PW, with approximately half of the variance caused by Ekman transport changes and half caused by changes in the geostrophic circulation. The data suggest a seasonal cycle of the MHT with a maximum in summer (July–September) and minimum in late winter (March–April), with an annual range of 0.6 PW. A breakdown of the MHT into “overturning” and “gyre” components shows that the overturning component carries 88% of the total heat transport. The overall uncertainty of the annual mean MHT for the 3.5-yr record is 0.14 PW or about 10% of the mean value.
Kanzow, Torsten (2009) Seasonal Variability of the Atlantic Meridional Overturning Circulation at 26.5°N [Talk] In: Joint IAPSO / IAMAS / IACS conference, 19.-29.07, Montreal, Canada. | 2010
Torsten Kanzow; S. A. Cunningham; William E. Johns; Joël J.-M. Hirschi; Jochem Marotzke; Molly O. Baringer; C. S. Meinen; M. P. Chidichimo; C. P. Atkinson; L. M. Beal; Harry L. Bryden; J. Collins
Abstract The Atlantic meridional overturning circulation (AMOC) makes the strongest oceanic contribution to the meridional redistribution of heat. Here, an observation-based, 48-month-long time series of the vertical structure and strength of the AMOC at 26.5°N is presented. From April 2004 to April 2008, the AMOC had a mean strength of 18.7 ± 2.1 Sv (1 Sv ≡ 106 m3 s−1) with fluctuations of 4.8 Sv rms. The best guess of the peak-to-peak amplitude of the AMOC seasonal cycle is 6.7 Sv, with a maximum strength in autumn and a minimum in spring. While seasonality in the AMOC was commonly thought to be dominated by the northward Ekman transport, this study reveals that fluctuations of the geostrophic midocean and Gulf Stream transports of 2.2 and 1.7 Sv rms, respectively, are substantially larger than those of the Ekman component (1.2 Sv rms). A simple model based on linear dynamics suggests that the seasonal cycle is dominated by wind stress curl forcing at the eastern boundary of the Atlantic. Seasonal geost...
Bulletin of the American Meteorological Society | 2013
Molly O. Baringer; William E. Johns; Gerard D. McCarthy; Joshua K. Willis; Silvia L. Garzoli; Matthias Lankhorst; C. S. Meinen; Uwe Send; Will Hobbs; S. A. Cunningham; D. Rayner; David A. Smeed; Torsten Kanzow; Patrick Heimbach; Eleanor Frajka-Williams; Alison M. Macdonald; S. Dong; Jochem Marotzke
Special supplement to the Bulletin of the American Meteorological Society vol.94, No. 8, August 2013
Archive | 2016
David A. Smeed; Gerard D. McCarthy; D. Rayner; B.I. Moat; William E. Johns; M.O. Barringer; C. S. Meinen
American Meteorological Society. Bulletin | 2013
Molly O. Baringer; William E. Johns; Gerard D. McCarthy; Joshua K. Willis; Silvia L. Garzoli; Matthias Lankhorst; C. S. Meinen; Uwe Send; Will Hobbs; S. A. Cunningham; Darren Rayner; David A. Smeed; Torsten Kanzow; Patrick Heimbach; Eleanor Frajka-Williams; Alison M. Macdonald; S. Dong; Jochem Marotzke
Archive | 2012
Silvia L. Garzoli; Povl Abrahamsen; Isabelle J. Ansorge; Arne Biastoch; Edmo J. D. Campos; Mauricio Magalhães Mata; C. S. Meinen; Jose Pelegri; Renellys C. Perez; Alberto R. Piola; Chris J. C. Reason; Michael Roberts; Sabrina Speich; Janet Sprintall; Randy Watts
Archive | 2014
Gokhan Danabasoglu; Ruth G. Curry; Alicia Karspeck; C. S. Meinen; Rym Msadek; Mike Patterson; Renellys C. Perez; Andreas Schmittner; Luanne Thompson; Steve G. Yeager
Archive | 2013
Molly O. Baringer; William E. Johns; Gerard D. McCarthy; G. Willis; Silvia L. Garzoli; Matthias Lankhorst; C. S. Meinen; Uwe Send; Will Hobbs; S. A. Cunningham; D. Rayner; David A. Smeed; Torsten Kanzow; Patrick Heimbach; Eleanor Frajka-Williams; Alison M. Macdonald; S. Dong; Jochem Marotzke
Bulletin of the American Meteorological Society | 2012
Molly O. Baringer; S. A. Cunningham; C. S. Meinen; S Garzoli; Joshua K. Willis; Matthias Lankhorst; Alison M. Macdonald; Uwe Send; Will Hobbs; Eleanor Frajka-Williams; Torsten Kanzow; Darren Rayner; William E. Johns; Jochem Marotzke
Baringer, M. O., Cunningham, S. A., Meinen, C. S., Garzoli, S., Willis, J., Lankhorst, M., Macdonald, A., Send, Uwe, Hobbs, W. R., Frajka-Williams, E., Kanzow, Torsten, Rayner, D., Johns, W. E. and Marotzke, J. (2012) Global oceans: Meridional overturning circulation observations in the subtropical North Atlantic Bulletin of the American Meteorological Society, 93 (7: State of the Climate in 2011). S78-S81. | 2012
Molly O. Baringer; S. A. Cunningham; C. S. Meinen; Silvia L. Garzoli; Joshua K. Willis; Matthias Lankhorst; Alison M. Macdonald; Uwe Send; Will Hobbs; Eleanor Frajka-Williams; Torsten Kanzow; Darren Rayner; William E. Johns; Jochem Marotzke