PUBLICATIONS

St. Laurent, L., 2008. Turbulent dissipation on the margins of the South China Sea. Geophysical Research Letters, accepted. download pdf

St. Laurent, L. C., and A. M. Thurnherr, 2007. Overflow mixing of lower thermocline water on the crest of the Mid-Atlantic Ridge. Nature, 448, 680-683, doi:10.1038/nature06043. download pdf

St. Laurent, L., and H. Simmons, 2006. Estimates of power consumed by mixing in the ocean interior. Journal of Climate, 19, 4877-4890.download pdf

Dewar, W. K, R. J. Bingham, R. L. Iverson, D. P. Nowacek, L. C. St. Laurent, and P. H. Wiebe, 2006. Does the marine biosphere mix the ocean? Journal of Marine Research, 64, 541-561.download pdf

Thurnherr, A. M., L. St. Laurent, K. G. Speer, J. M. Toole, and J. R. Ledwell, 2005. Mixing associated with sills in a canyon on the Mid-Ocean Ridge Flank. Journal of Physical Oceanography, 35, 1370-1381.download pdf

St. Laurent, L. and J. Nash, 2004. An examination of the radiative and dissipative properties of the internal tides. Deep-Sea Research II, 51, 3029—3042, doi:10.1016/j.dsr2.2004.09.008. download pdf

van Haren, L. St. Laurent, and D. Marshall, 2004. Small and mesoscale processes and their impact on the large scale: an introduction. Deep-Sea Research II, 51, 2883-2888, doi:10.1016/j.dsr2.2004.09.010. download pdf

Simmons, H. L., S. R. Jayne, L. St. Laurent, and A. Weaver, 2004. Tidally driven mixing in a numerical model of the ocean general circulation. Ocean Modelling, 6, 245--263, doi:10.1016/S1463-5003(03)00011-8.download pdf

St. Laurent, L., S. Stringer, C. Garrett, and D. Perrault-Joncas, 2003. The generation of internal tides at abrupt topography. Deep-Sea Research I, 50, 987--1003, doi:10.1016/S0967-0637(03)00096-7. download pdf

St. Laurent, L., H. L. Simmons, S. R. Jayne, 2002. Estimating tidally driven mixing in the deep ocean. Geophysical Research Letters, 29, 2106-2110, doi:10.1029/2002GL015633.download pdf

St. Laurent, L., and C. Garrett, 2002. The Role of Internal Tides in Mixing the Deep Ocean. Journal of Physical Oceanography, 32, 2882-2899.download pdf

Garrett, C., and L. St. Laurent, 2002. Aspects of Deep Ocean Mixing. Journal of the Oceanographic Society of Japan, 58, 11-24download pdf .

St. Laurent, L., J. M. Toole, and R. W. Schmitt, 2001. Buoyancy forcing by turbulence above rough topography in the abyssal Brazil Basin. Journal of Physical Oceanography, 31, 347-3495.download pdf

Morris, M., M. Hall, L. St. Laurent, and N. Hogg, 2001. Abyssal Mixing in the Deep Brazil Basin. Journal of Physical Oceanography, 31, 3331-3348.download pdf

Jayne, S. R., and L. St. Laurent, 2001. Parameterizing Tidal Dissipation Over Rough Topography. Geophysical Research Letters, 28, 811-814.download pdf

Ledwell, J. R., E. T. Montgomery, K. L. Polzin, L. St. Laurent, R. W. Schmitt, and J. M. Toole, 2000. Evidence for Enhanced Mixing Over Rough Topography in the Abyssal Ocean. Nature, 403, 179-182.download pdf

St. Laurent, L., and R. W. Schmitt, 1999. The Contribution of Salt Fingers to Vertical Mixing in the North Atlantic Tracer Release Experiment. Journal of Physical Oceanography, 29, 1404-1424.download pdf

Additional Publications

Jayne, S. R., L. C. St. Laurent, and S. T. Gille, 2004. Connections between ocean bottom topography and Earth's climate. Oceanography, 17, 65--74.download pdf

St. Laurent, L., and J. Nash, 2003. On the fraction of internal tide energy dissipated near topography. In Proceedings of the 'Aha Huliko'a Hawaiian Winter Workshop, 45--58.

St. Laurent, L., and C. Garrett, 2002. Energy dissipation by internal ocean tides. Bulletin of the American Meteorological Society, 83, 1457--1458.

St. Laurent, L., J. M. Toole, and R. W. Schmitt, 2001. Mixing and Diapycnal Advection in the Ocean. In Proceedings of the 'Aha Huliko'a Hawaiian Winter Workshop, 175--185.

Toole, J. M., J. R. Ledwell, K. L. Polzin, R. W. Schmitt, E. M. Montgomery, L. St. Laurent, and W. B. Owens, 1997. The Brazil Basin Tracer Release Experiment. International WOCE Newsletter, 28, 25--28.

St. Laurent, L., 1999. Diapycnal advection by double diffusion and turbulence in the ocean. Ph.D. dissertation, MIT-WHOI Joint Program in Oceanography, 139 pp.

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