404
Hammer, C. D., H. B. Clausen, and C. C. Langway Jr. (1994). Electrical conductivity method
(ECM) stratigraphic dating of the Byrd Station ice core, Antarctica,. Ann. Glaciology 20,
115-120.
Huang, R. X. and R. L. Chou (1994). Parameter sensitivity study of the saline circulation.
Clim. Dyn. 9,391-409.
Imbrie, J. et al. (1992). On the structure and origin of major glaciation cycles, 1. linear
responses to Milankovitch forcing. Paleoceanogr. 7, 701-738.
Imbrie, J. et al. (1993). On the structure and origin of major glaciation cycles, 1. the 100,000
years cycle. Paleoceanogr. 8, 699-735.
James, 1. N. and P. M. James (1992). Spatial structure of ultra-low frequency variability of
the flow in a simple atmospheric circulation model. Q. J. Roy. Met. Soc. 118, 1211-1233.
Johnsen, S. J., H. B. Clausen, W. Dansgaard, K. Fuhrer, N. Gundestrup, C. D. Hammer,
P. Iversen, J. Jouzel, B. Stauffer, and J. P. Steffensen (1992). Irregular glacial interstadials
recorded in a new Greenland ice core. Nature 359, 311-313.
Kushnir, J. (1994). Interdecadal variations in north atlantic sea surface temperature and
associated atmospheric conditions. J. Climate 7, 141-157.
Lazier, J. R. N. (1996). The salinity decrease in the Labraodr Sea over the past thirty years.
In Climate Variability on Decade-to-Century Time Scales. National Research Council. (in
press).
Lean, J. and D. Rind (1994). Solar variability: Implications for global change. EOS, Trans.
Am. Geophys. Union 75, 1-7.
Lehman, S. J. and L. D. Keigwin (1992). Sudden changes in North Atlantic circulation during
the last deglaciation. Nature 356, 757-762.
Levitus, S. (1989a). Interpentadal variability of salinity in the upper 150 m of the North
Atlantic ocean, 1970-1974 versus 1955-1959. J. Geophys. Res. 94, 9679-9685.
Levitus, S. (1989b). Interpentadal variability of temperature and salinity at intermediate
depths of the North Atlantic ocean, 1970-1974 versus 1955-1959. J. Geophys. Res. 94,
6091-6131.
Levitus, S. (1989c). Interpentadal variability of temperature and salinity in the deep North
Atlantic, 1970-1974 versus 1955-1959. J. Geophys. Res. 94, 16125-16131.
Levitus, S., J. 1. Antonov, and T. P. Boyer (1994). Interannual variability of temperature at
a depth of 125 meters in the North Atlantic ocean. Science 266, 96-99.
Lohmann, G., R. Gerdes, and D. Chen (1996). Sensitivity of the thermohaline circulation in
coupled ocean GCM - atmospheric EBM experiments. Clim. Dyn. xx, yy. (in press).
Lorenz, E. N. (1963). Deterministic non-periodic flow. J. Atm. Sci. 20, 130-141.
Lorenz, E. N. (1990). Can chaos and intransitivity lead to interannual variability? Tellus 42A,
378-389.
Manabe, S. and R. J. Stouffer (1988). Two stable equilibria of a coupled ocean-atmosphere
model. J. Climate 1, 841-866.
Mann, E., J. Park, and R. S. Bradley (1995). Global interdecadal and century-scale oscillations
during the past five centuries. Nature 378, 266-270.
Marotzke, J. (1989). Instabilities and multiple steady states of the thermohaline circulation.
In D. 1. T. Anderson and J. Willebrand (Eds.), Ocean Circulation Models: Combining
Data and Dynamics, NATO ASI, pp. 501-511. Kluwer.
Hammer, C. D., H. B. Clausen, and C. C. Langway Jr. (1994). Electrical conductivity method
(ECM) stratigraphic dating of the Byrd Station ice core, Antarctica,. Ann. Glaciology 20,
115-120.
Huang, R. X. and R. L. Chou (1994). Parameter sensitivity study of the saline circulation.
Clim. Dyn. 9,391-409.
Imbrie, J. et al. (1992). On the structure and origin of major glaciation cycles, 1. linear
responses to Milankovitch forcing. Paleoceanogr. 7, 701-738.
Imbrie, J. et al. (1993). On the structure and origin of major glaciation cycles, 1. the 100,000
years cycle. Paleoceanogr. 8, 699-735.
James, 1. N. and P. M. James (1992). Spatial structure of ultra-low frequency variability of
the flow in a simple atmospheric circulation model. Q. J. Roy. Met. Soc. 118, 1211-1233.
Johnsen, S. J., H. B. Clausen, W. Dansgaard, K. Fuhrer, N. Gundestrup, C. D. Hammer,
P. Iversen, J. Jouzel, B. Stauffer, and J. P. Steffensen (1992). Irregular glacial interstadials
recorded in a new Greenland ice core. Nature 359, 311-313.
Kushnir, J. (1994). Interdecadal variations in north atlantic sea surface temperature and
associated atmospheric conditions. J. Climate 7, 141-157.
Lazier, J. R. N. (1996). The salinity decrease in the Labraodr Sea over the past thirty years.
In Climate Variability on Decade-to-Century Time Scales. National Research Council. (in
press).
Lean, J. and D. Rind (1994). Solar variability: Implications for global change. EOS, Trans.
Am. Geophys. Union 75, 1-7.
Lehman, S. J. and L. D. Keigwin (1992). Sudden changes in North Atlantic circulation during
the last deglaciation. Nature 356, 757-762.
Levitus, S. (1989a). Interpentadal variability of salinity in the upper 150 m of the North
Atlantic ocean, 1970-1974 versus 1955-1959. J. Geophys. Res. 94, 9679-9685.
Levitus, S. (1989b). Interpentadal variability of temperature and salinity at intermediate
depths of the North Atlantic ocean, 1970-1974 versus 1955-1959. J. Geophys. Res. 94,
6091-6131.
Levitus, S. (1989c). Interpentadal variability of temperature and salinity in the deep North
Atlantic, 1970-1974 versus 1955-1959. J. Geophys. Res. 94, 16125-16131.
Levitus, S., J. 1. Antonov, and T. P. Boyer (1994). Interannual variability of temperature at
a depth of 125 meters in the North Atlantic ocean. Science 266, 96-99.
Lohmann, G., R. Gerdes, and D. Chen (1996). Sensitivity of the thermohaline circulation in
coupled ocean GCM - atmospheric EBM experiments. Clim. Dyn. xx, yy. (in press).
Lorenz, E. N. (1963). Deterministic non-periodic flow. J. Atm. Sci. 20, 130-141.
Lorenz, E. N. (1990). Can chaos and intransitivity lead to interannual variability? Tellus 42A,
378-389.
Manabe, S. and R. J. Stouffer (1988). Two stable equilibria of a coupled ocean-atmosphere
model. J. Climate 1, 841-866.
Mann, E., J. Park, and R. S. Bradley (1995). Global interdecadal and century-scale oscillations
during the past five centuries. Nature 378, 266-270.
Marotzke, J. (1989). Instabilities and multiple steady states of the thermohaline circulation.
In D. 1. T. Anderson and J. Willebrand (Eds.), Ocean Circulation Models: Combining
Data and Dynamics, NATO ASI, pp. 501-511. Kluwer.
