4.7 Article

Variations of the North Pacific Subtropical Mode Water from Direct Observations

Journal

JOURNAL OF CLIMATE
Volume 27, Issue 8, Pages 2842-2860

Publisher

AMER METEOROLOGICAL SOC
DOI: 10.1175/JCLI-D-13-00227.1

Keywords

Eddies; Ocean dynamics; Water masses; Mesoscale processes; Atmosphere-ocean interaction; Mesoscale systems

Funding

  1. National Science Foundation [OCE-0220161, OCE-0825152, OCE-0827125]
  2. National Oceanic and Atmospheric Administration (NOAA) Office of Climate Observations (OCO)
  3. NOAA Climate Observations and Monitoring program
  4. CNES

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Mooring measurements from the Kuroshio Extension System Study (June 2004-June 2006) and from the ongoing Kuroshio Extension Observatory (June 2004-present) are combined with float measurements of the Argo network to study the variability of the North Pacific Subtropical Mode Water (STMW) across the entire gyre, on time scales from days, to seasons, to a decade. The top of the STMW follows a seasonal cycle, although observations reveal that it primarily varies in discrete steps associated with episodic wind events. The variations of the STMW bottom depth are tightly related to the sea surface height (SSH), reflecting mesoscale eddies and large-scale variations of the Kuroshio Extension and recirculation gyre systems. Using the observed relationship between SSH and STMW, gridded SSH products and in situ estimates from floats are used to construct weekly maps of STMW thickness, providing nonbiased estimates of STMW total volume, annual formation and erosion volumes, and seasonal and interannual variability for the past decade. Year-to-year variations are detected, particularly a significant decrease of STMW volume in 2007-10 primarily attributable to a smaller volume formed. Variability of the heat content in the mode water region is dominated by the seasonal cycle and mesoscale eddies; there is only a weak link to STMW on interannual time scales, and no long-term trends in heat content and STMW thickness between 2002 and 2011 are detected. Weak lagged correlations among air-sea fluxes, oceanic heat content, and STMW thickness are found when averaged over the northwestern Pacific recirculation gyre region.

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