Estimating Bottom Stress in Tidal Boundary Layer from Acoustic Doppler Velocimeter Data

Author:

Kim S.-C.12345,Friedrichs C. T.12345,Maa J. P.-Y.12345,Wright L. D.12345

Affiliation:

1. Member, ASCE

2. Res. Asst. Prof., Virginia Inst. of Marine Sci., School of Marine Sci., Coll. of William and Mary, Gloucester Point, VA 23062. E-mail: sunkim@vims.edu

3. Asst. Prof., Virginia Inst. of Marine Sci., School of Marine Sci., Coll. of William and Mary, Gloucester Point, VA.

4. Assoc. Prof., Virginia Inst. of Marine Sci., School of Marine Sci., Coll. of William and Mary, Gloucester Point, VA.

5. Prof., Virginia Inst. of Marine Sci., School of Marine Sci., Coll. of William and Mary, Gloucester Point, VA.

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanical Engineering,Water Science and Technology,Civil and Structural Engineering

Reference26 articles.

1. Champagne F. H. Friehe C. A. and LaRue J. C. (1977). “Flux measurements flux estimation techniques and fine-scale turbulence measurements in the unstable surface layer over land.” J. Atmosph. Sci. 34 515–530.

2. Cheng R. T. Lind C. H. and Gartner J. W. (1999). “Estimates of bottom roughness length and bottom shear stress in south San Francisco Bay California.” J. Geophys. Res. 104 7715–7728.

3. Dellapena T. M. Kuehl S. A. and Schaffner L. C. (1998). “Sea-bed mixing and particle residence times in biologically dominated estuarine systems: A comparison of lower Chesapeake Bay and the York River subestuary.” Estuar. Coast. Shelf Sci. 46 777–795.

4. French J. R. and Clifford N. J. (1992). “Characteristics and event-structure of near-bed turbulence in a saltmarsh channel.” Estuar. Coast. Shelf Sci. 34 49–69.

5. Galperin B. Kantha L. H. Hassid S. and Rosati A. (1988). “A quasi-equilibrium turbulent energy model for geophysical flows.” J. Atmosph. Sci. 45 55–62.

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