SEDLOB and PAlLOB
143
Cox, M. D. (1984) A Primitive Equation, 3-Dimensional Model of the Ocean, GFDL Ocean
Group Technical Report No.1, Geophysical Fluid Dynamics Laboratory/NOOA, Princeton University
Dietrich, G., K. Kalle, W. KrauG, and G. Siedler (1975) Allgemeine Meereskunde - Eine Einflihrung in die Ozeanographie, Gebruder Borntraeger, Berlin, third edition, 593 pp
Dube, S. K., M. E. Luther, and J. J. O'Brien (1986:) Documentation of the FSU Indian Ocean
Model, Cooperative Indian Ocean Modelling Project Technical Report, Prepared at Mesoscale Air-Sea Interaction Group, The Florida State University, Tallahassee, FL 32306, 87
pp
Einsele, G. (1992) Sedimentary Basins; Evolution, Facies, and Sediment Budget, SpringerVerlag, Berlin, 628 pp
Enos, P. (1991) Sedimentary Parameters for Computer Modeling, Sedimentary Modeling:
Computer Simulation and Methods for Improved Parameter Definition, ed. E. K. Franseen, W. 1. Watney, C. G. St. C. Kendall and W. Ross, Kansas Geological Survey, 233,
63-98
Eppel, D. P. (1977/78) Numerische Simulation mesoskaliger Phanomene I., Skriptum zur
Vorlesung - gehalten im Institut fur Meereskunde an der Universitat Kiel, Forschungszentrum Geesthacht GmbH - GKSS, Geesthacht, 105 pp
ETOP05 (1986) Digital Relief of the Surface of the Earth, National Geophysical Data Center,
Boulder, Colorado
Fahrbach, E., H. Franz, G. Gust, M. Hantel, J. Meincke, P. Muller, M. Rhein, W. Roether, and
J. Willebrand (1989) Numerical Data and Functional Relationships in Science and Technology - Oceanography, Landolt-Bornstein, New Series Springer-Verlag, Berlin, Heidelberg, New York, London, Paris, Tokyo, Hong Kong, 3c, 398 pp
Frohlich, c., and R. K. Matthews (1991) Strata-Various: A Flexible Fortran Program for Dynamic Forward Modeling of Stratigraphy, Sedimentary Modeling: Computer Simulation
and Methods for Improved Parameter Definition, ed. E. K. Franseen, W. 1. Watney, C. G.
St. C. Kendall and W. Ross, Kansas Geological Survey, 233, 449-461,524 pp
Garde, R. J., and K. G. Ranga Raju (1977) Mechanics of Sediment Transportation and Alluvial Stream Problems, Wiley Eastern Limited, New Delhi, Bangalore, Bombay, 483 pp
Gerdes, R. (1988) Die Rolle der Dichtediffusion in numerischen Modellen der Nordatlantischen Zirkulation, Berichte aus dem Institut fur Meereskunde an der Christian-Albrechts-Universitat Kiel, 179, 176 pp
Gibbs, R. J., M. D. Matthews, and D. A. Link (1971) The Relationship between Sphere Size
and Settling Velocity, Journal of Sedimentary Petrology, 41, No.1, 7-18
Gibbs, R. J. (1985) Settling Velocity, Diameter, and Density for Floes of Illite, Kaolinite, and
Montmorillonite, Journal of Sedimentary Petrology, 55, 65-68
Goldschmidt, P. M., S. 1. Pfirmann, I. Wollenburg, and R. Henrich (1992) Origin of Sediment Pellets from the Arctic Seafloor: Sea Ice or Icebergs?, Deep-Sea Research, 39,
539-565
Goldstein, H. (1985) Klassiche Mechanik, AULA-Verlag, Wiesbaden, 8. edition, 443 pp
Gross, T. F., and W. D. Dade (1991) Suspended Sediment Storm Modeling, Marine Geology,
99,343-360
Haupt, B. J. (1990) FluG-Gradient-Beziehung in wirbelauflosenden Modellen, Diplomarbeit, Institut flir Meereskunde Kiel, Universitat Kiel, 97 pp
Haupt, B. J., Chr. Schafer-Neth, and K. Stattegger (1992) Towards Modelling the Paleocirculation and Sedimentation of the Northern North Atlantic, Fourth International Conference on Paleoceanography, Kiel, 137-l38
Haupt, B. J., Chr. Schafer-Neth, and K. Stattegger (1994) Modelling Sediment Drifts; A Coupled Oceanic Circulation -Sedimentation Model of the Northern North Atlantic, Paleoceanography, 9/6, 897-916
Haupt, B. J., Chr. Schafer-Neth, and K. Stattegger (1995) 3-D Numerical Modelling of Late
Quaternary Paleoceanography and Sedimentation in the Northern North Atlantic, Geologische Rundschau, 84, 137-150
143
Cox, M. D. (1984) A Primitive Equation, 3-Dimensional Model of the Ocean, GFDL Ocean
Group Technical Report No.1, Geophysical Fluid Dynamics Laboratory/NOOA, Princeton University
Dietrich, G., K. Kalle, W. KrauG, and G. Siedler (1975) Allgemeine Meereskunde - Eine Einflihrung in die Ozeanographie, Gebruder Borntraeger, Berlin, third edition, 593 pp
Dube, S. K., M. E. Luther, and J. J. O'Brien (1986:) Documentation of the FSU Indian Ocean
Model, Cooperative Indian Ocean Modelling Project Technical Report, Prepared at Mesoscale Air-Sea Interaction Group, The Florida State University, Tallahassee, FL 32306, 87
pp
Einsele, G. (1992) Sedimentary Basins; Evolution, Facies, and Sediment Budget, SpringerVerlag, Berlin, 628 pp
Enos, P. (1991) Sedimentary Parameters for Computer Modeling, Sedimentary Modeling:
Computer Simulation and Methods for Improved Parameter Definition, ed. E. K. Franseen, W. 1. Watney, C. G. St. C. Kendall and W. Ross, Kansas Geological Survey, 233,
63-98
Eppel, D. P. (1977/78) Numerische Simulation mesoskaliger Phanomene I., Skriptum zur
Vorlesung - gehalten im Institut fur Meereskunde an der Universitat Kiel, Forschungszentrum Geesthacht GmbH - GKSS, Geesthacht, 105 pp
ETOP05 (1986) Digital Relief of the Surface of the Earth, National Geophysical Data Center,
Boulder, Colorado
Fahrbach, E., H. Franz, G. Gust, M. Hantel, J. Meincke, P. Muller, M. Rhein, W. Roether, and
J. Willebrand (1989) Numerical Data and Functional Relationships in Science and Technology - Oceanography, Landolt-Bornstein, New Series Springer-Verlag, Berlin, Heidelberg, New York, London, Paris, Tokyo, Hong Kong, 3c, 398 pp
Frohlich, c., and R. K. Matthews (1991) Strata-Various: A Flexible Fortran Program for Dynamic Forward Modeling of Stratigraphy, Sedimentary Modeling: Computer Simulation
and Methods for Improved Parameter Definition, ed. E. K. Franseen, W. 1. Watney, C. G.
St. C. Kendall and W. Ross, Kansas Geological Survey, 233, 449-461,524 pp
Garde, R. J., and K. G. Ranga Raju (1977) Mechanics of Sediment Transportation and Alluvial Stream Problems, Wiley Eastern Limited, New Delhi, Bangalore, Bombay, 483 pp
Gerdes, R. (1988) Die Rolle der Dichtediffusion in numerischen Modellen der Nordatlantischen Zirkulation, Berichte aus dem Institut fur Meereskunde an der Christian-Albrechts-Universitat Kiel, 179, 176 pp
Gibbs, R. J., M. D. Matthews, and D. A. Link (1971) The Relationship between Sphere Size
and Settling Velocity, Journal of Sedimentary Petrology, 41, No.1, 7-18
Gibbs, R. J. (1985) Settling Velocity, Diameter, and Density for Floes of Illite, Kaolinite, and
Montmorillonite, Journal of Sedimentary Petrology, 55, 65-68
Goldschmidt, P. M., S. 1. Pfirmann, I. Wollenburg, and R. Henrich (1992) Origin of Sediment Pellets from the Arctic Seafloor: Sea Ice or Icebergs?, Deep-Sea Research, 39,
539-565
Goldstein, H. (1985) Klassiche Mechanik, AULA-Verlag, Wiesbaden, 8. edition, 443 pp
Gross, T. F., and W. D. Dade (1991) Suspended Sediment Storm Modeling, Marine Geology,
99,343-360
Haupt, B. J. (1990) FluG-Gradient-Beziehung in wirbelauflosenden Modellen, Diplomarbeit, Institut flir Meereskunde Kiel, Universitat Kiel, 97 pp
Haupt, B. J., Chr. Schafer-Neth, and K. Stattegger (1992) Towards Modelling the Paleocirculation and Sedimentation of the Northern North Atlantic, Fourth International Conference on Paleoceanography, Kiel, 137-l38
Haupt, B. J., Chr. Schafer-Neth, and K. Stattegger (1994) Modelling Sediment Drifts; A Coupled Oceanic Circulation -Sedimentation Model of the Northern North Atlantic, Paleoceanography, 9/6, 897-916
Haupt, B. J., Chr. Schafer-Neth, and K. Stattegger (1995) 3-D Numerical Modelling of Late
Quaternary Paleoceanography and Sedimentation in the Northern North Atlantic, Geologische Rundschau, 84, 137-150
