406
Stuiver, M. (1980). Solar variability and climate change during the current millennium. Nature 286, 868-871.
Taylor, K. C., G. W. Lamorey, G. A. Doyle, R B. Alley, P. M. Grootes, P. A. Mayewski,
J. W. C. White, and L. K. Barlow (1993). The 'flickering switch' oflate Pleistocene climate
change. Nature 361, 432-436.
Trenberth, K. E. (Ed.) (1992). Climate System Modeling. Cambridge.
Von Storch, J. (1994). Interdecadal variability in a global coupled model. Tellus 46A, 419-432.
Weaver, A. J., S. M. Aura, and P. G. Myers (1994). Interdecadal variability in an idealized
model of the North Atlantic. J. Geophys. Res. 99, 12423-12441.
Weaver, A. J., J. Marotzke, P. F. Cummins, and E. S. Sarachik (1993). Stability and variability
of the thermohaline circulation. J. Phys. Oceanogr. 23, 39-60.
Weaver, A. J. and E. S. Sarachik (1991a). Evidence for decadal variability in an ocean general
circulation model: an advective mechanism. Atmosphere-Ocean 29, 197-231.
Weaver, A. J. and E. S. Sarachik (1991b). The role of mixed boundary conditions in numerical
models of the ocean's climate. J. Phys. Oceanogr. 21, 1470-1493.
Weisse, R, U. Mikolajewicz, and E. Maier-Reimer (1993). Decadal variability of the north
atlantic in an ocean general circulation model. J. Geophys. Res. 99, 12411-12422.
Welander, P. (1986). Thermohaline effects in the ocean circulation and related simple models.
In J. Willebrand and D.L.T.Anderson (Eds.), Large-Scale Transport Processes in Oceans
and Atmosphere, pp. 163-200. D. Reidel.
Winton, M. (1993). Deep decoupling oscillations of the oceanic thermohaline circulation. In
W. Peltier (Ed.), Ice in the climate system, Volume I 12 of NATO ASI, pp. 417-432.
Springer.
Winton, M. and E. S. Sarachik (1993). Thermohaline oscillations induced by strong steady
salinity forcing of ocean general circulation models. J. Phys. Oceanogr. 23, 1389-1410.
Wright, D. G. and T. F. Stocker (1991). A zonally averaged ocean model for the thermohaline
circulation. Part I: Model development and flow dynamics. J. Phys. Oceanogr. 21 (12),
1713-1724.
Wright, D. G. and T. F. Stocker (1993). Younger Dryas experiments. In W. R Peltier (Ed.),
Ice in the Climate System, Volume I 12 of NATO ASI, pp. 395-416. Springer Verlag.
Yang, J. and J. D. Neelin (1993). Sea-ice interaction with the thermohaline circulation. Geophys. Res. Lett. 20, 217-220.
Zhang, S., R Greatbatch, and C. A. Lin (1993). A reexamination of the polar halocline catastrophe and implications for coupled ocean-atmosphere modeling. J. Phys. Oceanogr. 23,
287-299.
Zhang, S., C. A. Lin, and R Greatbatch (1995). A decadal oscillation due to the coupling between an ocean circulation model and a thermodynamic sea-ice model. J. Marine Res. 53,
79-106.
Stuiver, M. (1980). Solar variability and climate change during the current millennium. Nature 286, 868-871.
Taylor, K. C., G. W. Lamorey, G. A. Doyle, R B. Alley, P. M. Grootes, P. A. Mayewski,
J. W. C. White, and L. K. Barlow (1993). The 'flickering switch' oflate Pleistocene climate
change. Nature 361, 432-436.
Trenberth, K. E. (Ed.) (1992). Climate System Modeling. Cambridge.
Von Storch, J. (1994). Interdecadal variability in a global coupled model. Tellus 46A, 419-432.
Weaver, A. J., S. M. Aura, and P. G. Myers (1994). Interdecadal variability in an idealized
model of the North Atlantic. J. Geophys. Res. 99, 12423-12441.
Weaver, A. J., J. Marotzke, P. F. Cummins, and E. S. Sarachik (1993). Stability and variability
of the thermohaline circulation. J. Phys. Oceanogr. 23, 39-60.
Weaver, A. J. and E. S. Sarachik (1991a). Evidence for decadal variability in an ocean general
circulation model: an advective mechanism. Atmosphere-Ocean 29, 197-231.
Weaver, A. J. and E. S. Sarachik (1991b). The role of mixed boundary conditions in numerical
models of the ocean's climate. J. Phys. Oceanogr. 21, 1470-1493.
Weisse, R, U. Mikolajewicz, and E. Maier-Reimer (1993). Decadal variability of the north
atlantic in an ocean general circulation model. J. Geophys. Res. 99, 12411-12422.
Welander, P. (1986). Thermohaline effects in the ocean circulation and related simple models.
In J. Willebrand and D.L.T.Anderson (Eds.), Large-Scale Transport Processes in Oceans
and Atmosphere, pp. 163-200. D. Reidel.
Winton, M. (1993). Deep decoupling oscillations of the oceanic thermohaline circulation. In
W. Peltier (Ed.), Ice in the climate system, Volume I 12 of NATO ASI, pp. 417-432.
Springer.
Winton, M. and E. S. Sarachik (1993). Thermohaline oscillations induced by strong steady
salinity forcing of ocean general circulation models. J. Phys. Oceanogr. 23, 1389-1410.
Wright, D. G. and T. F. Stocker (1991). A zonally averaged ocean model for the thermohaline
circulation. Part I: Model development and flow dynamics. J. Phys. Oceanogr. 21 (12),
1713-1724.
Wright, D. G. and T. F. Stocker (1993). Younger Dryas experiments. In W. R Peltier (Ed.),
Ice in the Climate System, Volume I 12 of NATO ASI, pp. 395-416. Springer Verlag.
Yang, J. and J. D. Neelin (1993). Sea-ice interaction with the thermohaline circulation. Geophys. Res. Lett. 20, 217-220.
Zhang, S., R Greatbatch, and C. A. Lin (1993). A reexamination of the polar halocline catastrophe and implications for coupled ocean-atmosphere modeling. J. Phys. Oceanogr. 23,
287-299.
Zhang, S., C. A. Lin, and R Greatbatch (1995). A decadal oscillation due to the coupling between an ocean circulation model and a thermodynamic sea-ice model. J. Marine Res. 53,
79-106.
