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You searched for +publisher:"University of Florida" +contributor:("McKee Smith, Jane "). Showing records 1 – 4 of 4 total matches.

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University of Florida

1. Martz, Tracy. Investigation and Modeling of Nonlinear Wave Propagation Over Fringing Reefs.

Degree: MS, Coastal and Oceanographic Engineering - Civil and Coastal Engineering, 2010, University of Florida

 Extensive wave breaking occurs on the wide reefs located offshore of many Pacific islands, due to their steep slope nearshore. These reefs provide protection to… (more)

Subjects/Keywords: Beaches; Coral reefs; Harmonics; Modeling; Parametric models; Reefs; Shallow water; Spectral energy distribution; Wave interaction; Waves; fringing, linear, modeling, nonlinear, reefs, setup, waves, xbeach

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Martz, T. (2010). Investigation and Modeling of Nonlinear Wave Propagation Over Fringing Reefs. (Masters Thesis). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0042259

Chicago Manual of Style (16th Edition):

Martz, Tracy. “Investigation and Modeling of Nonlinear Wave Propagation Over Fringing Reefs.” 2010. Masters Thesis, University of Florida. Accessed September 22, 2019. http://ufdc.ufl.edu/UFE0042259.

MLA Handbook (7th Edition):

Martz, Tracy. “Investigation and Modeling of Nonlinear Wave Propagation Over Fringing Reefs.” 2010. Web. 22 Sep 2019.

Vancouver:

Martz T. Investigation and Modeling of Nonlinear Wave Propagation Over Fringing Reefs. [Internet] [Masters thesis]. University of Florida; 2010. [cited 2019 Sep 22]. Available from: http://ufdc.ufl.edu/UFE0042259.

Council of Science Editors:

Martz T. Investigation and Modeling of Nonlinear Wave Propagation Over Fringing Reefs. [Masters Thesis]. University of Florida; 2010. Available from: http://ufdc.ufl.edu/UFE0042259


University of Florida

2. Hesser, Tyler. Advancement and Validation of Numerical Storm Surge Modeling on Coral Reefs Using Laboratory Comparisons.

Degree: PhD, Coastal and Oceanographic Engineering - Civil and Coastal Engineering, 2010, University of Florida

 Present numerical storm surge models were developed and tested on gentle sloping coastlines common in the continental United States. Islands with fringing coral reefs have… (more)

Subjects/Keywords: Bathymetry; Coral reefs; Energy dissipation; Error rates; Flumes; Flux density; Low frequencies; Measuring instruments; Spectral energy distribution; Waves; breaking, coral, hurricanes, models, ocean, stwave, waves

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APA (6th Edition):

Hesser, T. (2010). Advancement and Validation of Numerical Storm Surge Modeling on Coral Reefs Using Laboratory Comparisons. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0042548

Chicago Manual of Style (16th Edition):

Hesser, Tyler. “Advancement and Validation of Numerical Storm Surge Modeling on Coral Reefs Using Laboratory Comparisons.” 2010. Doctoral Dissertation, University of Florida. Accessed September 22, 2019. http://ufdc.ufl.edu/UFE0042548.

MLA Handbook (7th Edition):

Hesser, Tyler. “Advancement and Validation of Numerical Storm Surge Modeling on Coral Reefs Using Laboratory Comparisons.” 2010. Web. 22 Sep 2019.

Vancouver:

Hesser T. Advancement and Validation of Numerical Storm Surge Modeling on Coral Reefs Using Laboratory Comparisons. [Internet] [Doctoral dissertation]. University of Florida; 2010. [cited 2019 Sep 22]. Available from: http://ufdc.ufl.edu/UFE0042548.

Council of Science Editors:

Hesser T. Advancement and Validation of Numerical Storm Surge Modeling on Coral Reefs Using Laboratory Comparisons. [Doctoral Dissertation]. University of Florida; 2010. Available from: http://ufdc.ufl.edu/UFE0042548


University of Florida

3. Safak, Ilgar. Interaction of bottom turbulence and cohesive sediment on the muddy Atchafalaya Shelf, Louisiana, USA.

Degree: PhD, Coastal and Oceanographic Engineering - Civil and Coastal Engineering, 2010, University of Florida

 Interaction of near-bed wave-induced turbulence and cohesive sediments in muddy environments is studied based on field observations and a bottom boundary layer model. Wave, current,… (more)

Subjects/Keywords: Boundary layers; Modeling; Mud; Reynolds stress; Sediments; Sensors; Turbulence; Turbulence models; Velocity; Waves; atchafalaya, boundary, coastal, cohesive, concentration, current, dissipation, floc, louisiana, model, mud, nearshore, ocean, reynolds, sediment, shelf, stratification, stress, tke, turbulence, wave, wind

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Safak, I. (2010). Interaction of bottom turbulence and cohesive sediment on the muddy Atchafalaya Shelf, Louisiana, USA. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0042017

Chicago Manual of Style (16th Edition):

Safak, Ilgar. “Interaction of bottom turbulence and cohesive sediment on the muddy Atchafalaya Shelf, Louisiana, USA.” 2010. Doctoral Dissertation, University of Florida. Accessed September 22, 2019. http://ufdc.ufl.edu/UFE0042017.

MLA Handbook (7th Edition):

Safak, Ilgar. “Interaction of bottom turbulence and cohesive sediment on the muddy Atchafalaya Shelf, Louisiana, USA.” 2010. Web. 22 Sep 2019.

Vancouver:

Safak I. Interaction of bottom turbulence and cohesive sediment on the muddy Atchafalaya Shelf, Louisiana, USA. [Internet] [Doctoral dissertation]. University of Florida; 2010. [cited 2019 Sep 22]. Available from: http://ufdc.ufl.edu/UFE0042017.

Council of Science Editors:

Safak I. Interaction of bottom turbulence and cohesive sediment on the muddy Atchafalaya Shelf, Louisiana, USA. [Doctoral Dissertation]. University of Florida; 2010. Available from: http://ufdc.ufl.edu/UFE0042017


University of Florida

4. Jaramillo, Sergio. Observations of Wave-Sediment Interactions on a Muddy Shelf.

Degree: PhD, Coastal and Oceanographic Engineering - Civil and Coastal Engineering, 2008, University of Florida

 In an effort to better understand the interaction between wave propagation and sediment transport processes in a muddy environment, this work discusses the data collection… (more)

Subjects/Keywords: Boundary layers; Mud; Seas; Sediments; Signals; Velocity; Viscosity; Wave attenuation; Wave interaction; Waves; gravity, mud, nonlinear, waves

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Jaramillo, S. (2008). Observations of Wave-Sediment Interactions on a Muddy Shelf. (Doctoral Dissertation). University of Florida. Retrieved from http://ufdc.ufl.edu/UFE0022682

Chicago Manual of Style (16th Edition):

Jaramillo, Sergio. “Observations of Wave-Sediment Interactions on a Muddy Shelf.” 2008. Doctoral Dissertation, University of Florida. Accessed September 22, 2019. http://ufdc.ufl.edu/UFE0022682.

MLA Handbook (7th Edition):

Jaramillo, Sergio. “Observations of Wave-Sediment Interactions on a Muddy Shelf.” 2008. Web. 22 Sep 2019.

Vancouver:

Jaramillo S. Observations of Wave-Sediment Interactions on a Muddy Shelf. [Internet] [Doctoral dissertation]. University of Florida; 2008. [cited 2019 Sep 22]. Available from: http://ufdc.ufl.edu/UFE0022682.

Council of Science Editors:

Jaramillo S. Observations of Wave-Sediment Interactions on a Muddy Shelf. [Doctoral Dissertation]. University of Florida; 2008. Available from: http://ufdc.ufl.edu/UFE0022682

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