284
J. M. Magalhaes et al.
Pingree RD, New AL (1989) Downward propagation of internal tidal energy into the Bay of Biscay.
Deep-Sea Res Part A 36:735–758 doi:10.1016/0198-0149(89)90148-9
Pingree RD, New AL (1991) Abyssal penetration and bottom reflection of internal
tidal energy in the Bay of Biscay. J Phys Oceanogr 21:28–39. doi:10.1175/15200485(1991)021<0028:APABRO>2.0.CO;2
Pingree RD, Mardell GT, New AL (1986) Propagation of internal tides from the upper slopes of the
Bay of Biscay. Nature 312:154–158. doi:10.1038/321154a
Pinkel R (2000) Internal solitary waves in the warm pool of the western equatorial pacific. J Phys
Oceanogr 30:2906–2926. doi:10.1175/1520-0485(2001)031 < 2906:ISWITW > 2.0.CO;2
Reeder MJ, Christie DR, Smith RK, Grimshaw RHJ (1995) Interacting morning glories over
northern Australia. Bull Amer Meteor Soc 76:1165–1171
Ridderinkhof H, van der Werf PM, Ullgren JE, van Aken HM, van Leeuwen PJ, de Ruijter WPM
(2010) Seasonal and interannual variability in the Mozambique Channel from moored current
observations. J Geophys Res 115:C06010. doi:10.1029/2009JC005619
Sandstrom H, Elliott JA (1984) Internal tide and solitons on the Scotian Shelf: a nutrient pump at
work. J Geophys Res 89(C4):6415–6426. doi:10.1029/JC089iC04p06415
Sherwin TJ, Vlasenko VI, Stashchuk N, Jeans DRG, Jones B (2002) Along-slope generation as
an explanation for some unusually large internal tides. Deep-Sea Res Part I 49:1787–1799.
doi:10.1016/S0967-0637(02)00096-1
Shroyer EL, Moum JN, Nash JD (2010a) Vertical heat flux and lateral mass transport in nonlinear
internal waves.Geophys Res Lett 37:L08601. doi:10.1029/2010GL042715
Shroyer EL, Moum JN, Nash JD (2010b) Energy transformations and dissipation of nonlinear internal waves over New Jersey’s continental shelf. Nonlinear Proc Geoph 17:345–360.
doi:10.5194/npg-17-345-2010
Shroyer EL, Moum JN, Nash JD (2010c) Mode 2 waves on the continental shelf:
ephemeral components of the nonlinear internal wavefield. J Geophys Res 115:C07001.
http://dx.doi.org/10.1029/2009JC005605
Smith WHF, Sandwell DT (1997) Global sea floor topography from satellite altimetry and ship
depth soundings. Science 277(5334):1956–1962. doi:10.1126/science 277.5334.1956
Swart NC, Lutjeharms JRE, Ridderinkhof H, de Ruijter WPM (2010) Observed characteristics of
Mozambique Channel eddies. J Geophys Res 115:C09006. doi:10.1029/2009JC005875
Ullgren J, van Aken H, Ridderinkhof H (2010) Unique measurements of ocean currents east of
Africa. NIOZ Annual Report 2010, 21–22
Vlasenko V,Alpers W (2005) Generation of secondary internal waves by the interaction of an internal
solitary wave with an underwater bank. J Geophys Res 110:C02019. doi:10.1029/2004JC002467
J. M. Magalhaes et al.
Pingree RD, New AL (1989) Downward propagation of internal tidal energy into the Bay of Biscay.
Deep-Sea Res Part A 36:735–758 doi:10.1016/0198-0149(89)90148-9
Pingree RD, New AL (1991) Abyssal penetration and bottom reflection of internal
tidal energy in the Bay of Biscay. J Phys Oceanogr 21:28–39. doi:10.1175/15200485(1991)021<0028:APABRO>2.0.CO;2
Pingree RD, Mardell GT, New AL (1986) Propagation of internal tides from the upper slopes of the
Bay of Biscay. Nature 312:154–158. doi:10.1038/321154a
Pinkel R (2000) Internal solitary waves in the warm pool of the western equatorial pacific. J Phys
Oceanogr 30:2906–2926. doi:10.1175/1520-0485(2001)031 < 2906:ISWITW > 2.0.CO;2
Reeder MJ, Christie DR, Smith RK, Grimshaw RHJ (1995) Interacting morning glories over
northern Australia. Bull Amer Meteor Soc 76:1165–1171
Ridderinkhof H, van der Werf PM, Ullgren JE, van Aken HM, van Leeuwen PJ, de Ruijter WPM
(2010) Seasonal and interannual variability in the Mozambique Channel from moored current
observations. J Geophys Res 115:C06010. doi:10.1029/2009JC005619
Sandstrom H, Elliott JA (1984) Internal tide and solitons on the Scotian Shelf: a nutrient pump at
work. J Geophys Res 89(C4):6415–6426. doi:10.1029/JC089iC04p06415
Sherwin TJ, Vlasenko VI, Stashchuk N, Jeans DRG, Jones B (2002) Along-slope generation as
an explanation for some unusually large internal tides. Deep-Sea Res Part I 49:1787–1799.
doi:10.1016/S0967-0637(02)00096-1
Shroyer EL, Moum JN, Nash JD (2010a) Vertical heat flux and lateral mass transport in nonlinear
internal waves.Geophys Res Lett 37:L08601. doi:10.1029/2010GL042715
Shroyer EL, Moum JN, Nash JD (2010b) Energy transformations and dissipation of nonlinear internal waves over New Jersey’s continental shelf. Nonlinear Proc Geoph 17:345–360.
doi:10.5194/npg-17-345-2010
Shroyer EL, Moum JN, Nash JD (2010c) Mode 2 waves on the continental shelf:
ephemeral components of the nonlinear internal wavefield. J Geophys Res 115:C07001.
http://dx.doi.org/10.1029/2009JC005605
Smith WHF, Sandwell DT (1997) Global sea floor topography from satellite altimetry and ship
depth soundings. Science 277(5334):1956–1962. doi:10.1126/science 277.5334.1956
Swart NC, Lutjeharms JRE, Ridderinkhof H, de Ruijter WPM (2010) Observed characteristics of
Mozambique Channel eddies. J Geophys Res 115:C09006. doi:10.1029/2009JC005875
Ullgren J, van Aken H, Ridderinkhof H (2010) Unique measurements of ocean currents east of
Africa. NIOZ Annual Report 2010, 21–22
Vlasenko V,Alpers W (2005) Generation of secondary internal waves by the interaction of an internal
solitary wave with an underwater bank. J Geophys Res 110:C02019. doi:10.1029/2004JC002467
