164
J. Atkinson
Gailani J, Ziegler CK, Lick W (1991) Transport of suspended solids in the lower Fox
River. J Great Lakes Res 17(4):479-494
Hayashida T, Atkinson JF, DePinto N, Rumer RR (2000) A numerical study of the
Niagara River discharge near-shore flow field in Lake Ontario. J Great Lakes Res
25(4): 897-909
Jepsen R, Roberts J, Lick W (1997) Effects of bulk density on sediment erosion rates.
Water Air Soil Pollut 99:21-31
Lick W, Xu YJ, McNeil J (1995) Resuspension properties of sediments from the Fox,
Saginaw and Buffalo Rivers. J Great Lakes Res 21(2):257-274
Macpherson A (2000) CUSTAC - Canada United States Trade Center, University at
Buffalo, Buffalo, New York
Podber DP, Bedford KW (1999) Formulation and application of a three-dimensional
hydrodynamic model for thermocline capture and tracking on a geophysical scale.
Ann Conf Int Assoc Great Lakes Res, Case Western Reserve Univ, Cleveland,
Ohio
Schwab, D (2000) Great Lakes Environmental Research Laboratory, Ann Arbor, MI,
USA (descriptions of POM model applications can be found at the web site,
http://www.noaa.gov/glerlD
Song J (2001) Modeling the transport and fate of hydrophobic organic chemicals in a
fluvial system during resuspension events. PhD Dissertation, Dept Civ Struct Env
Eng, University at Buffalo, Buffalo, New York
Thompson T A, Baedke SJ (1997) Strand-plain evidence for late Holocene lake-level
variations in Lake Michigan. GSA Bull 109:666-682
Wu S, Gschwend PM (1986) Sorption kinetics of hydrophobic organic compounds to
natural sediments and soils. Environ Sci TechnoI20:717-725
J. Atkinson
Gailani J, Ziegler CK, Lick W (1991) Transport of suspended solids in the lower Fox
River. J Great Lakes Res 17(4):479-494
Hayashida T, Atkinson JF, DePinto N, Rumer RR (2000) A numerical study of the
Niagara River discharge near-shore flow field in Lake Ontario. J Great Lakes Res
25(4): 897-909
Jepsen R, Roberts J, Lick W (1997) Effects of bulk density on sediment erosion rates.
Water Air Soil Pollut 99:21-31
Lick W, Xu YJ, McNeil J (1995) Resuspension properties of sediments from the Fox,
Saginaw and Buffalo Rivers. J Great Lakes Res 21(2):257-274
Macpherson A (2000) CUSTAC - Canada United States Trade Center, University at
Buffalo, Buffalo, New York
Podber DP, Bedford KW (1999) Formulation and application of a three-dimensional
hydrodynamic model for thermocline capture and tracking on a geophysical scale.
Ann Conf Int Assoc Great Lakes Res, Case Western Reserve Univ, Cleveland,
Ohio
Schwab, D (2000) Great Lakes Environmental Research Laboratory, Ann Arbor, MI,
USA (descriptions of POM model applications can be found at the web site,
http://www.noaa.gov/glerlD
Song J (2001) Modeling the transport and fate of hydrophobic organic chemicals in a
fluvial system during resuspension events. PhD Dissertation, Dept Civ Struct Env
Eng, University at Buffalo, Buffalo, New York
Thompson T A, Baedke SJ (1997) Strand-plain evidence for late Holocene lake-level
variations in Lake Michigan. GSA Bull 109:666-682
Wu S, Gschwend PM (1986) Sorption kinetics of hydrophobic organic compounds to
natural sediments and soils. Environ Sci TechnoI20:717-725
