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CEE 6244: Random Fields & Geostatist
3.00 Credits
Georgia Institute of Technology-Main Campus
Probability density function; moments; scales of fluctuations; spectral representation; simulation of random fields; cross-correlated random fields; vector fields; kriging; conditional simulation.
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CEE 6244 - Random Fields & Geostatist
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CEE 6251: Fluid Mechanics
0.00 - 3.00 Credits
Georgia Institute of Technology-Main Campus
Concepts of linear and angular deformation, vorticity, and conservation of mass. Development of Navier-Stokes with solutions: steady and unsteady uniform laminar, vortex, creeping, and potential flow.
Prerequisite:
Undergraduate Semester level CEE 3040 Minimum Grade of D and Undergraduate Semester level CEE 4200 Minimum Grade of D
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CEE 6251 - Fluid Mechanics
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CEE 6252: Adv Fluid Mechanics
3.00 Credits
Georgia Institute of Technology-Main Campus
Theory of three-dimensional turbulent boundary layers with application to environmental flows in rivers, estuaries, and the atmosphere of interest in water resources engineering.
Prerequisite:
Graduate Semester level CEE 6251 Minimum Grade of D
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CEE 6252 - Adv Fluid Mechanics
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CEE 6261: Environ Fluid Mechanics
3.00 Credits
Georgia Institute of Technology-Main Campus
Dynamics, mixing, and contaminant transport in surface water bodies, including lakes, rivers, estuaries, and coastal waters. Introduction to numerical models. Prediction of mixing zones.
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CEE 6261 - Environ Fluid Mechanics
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CEE 6262: Adv Environ Fluid Mech
3.00 Credits
Georgia Institute of Technology-Main Campus
Buoyancy modifications to the mixing and dynamics of pollutant discharges and surface water bodies. Gathering and analysis of laboratory and field data for mixing problems.
Prerequisite:
Graduate Semester level CEE 6261 Minimum Grade of D
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CEE 6262 - Adv Environ Fluid Mech
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CEE 6263: Fluid Mech of Organisms
3.00 Credits
Georgia Institute of Technology-Main Campus
Principles of fluid mechanics are applied in the context of biology. Discussion of transport of chemical and mechanical signals and fluid forces affecting organisms.
Prerequisite:
Undergraduate Semester level MATH 1501 Minimum Grade of D and Undergraduate Semester level PHYS 2211 Minimum Grade of D
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CEE 6263 - Fluid Mech of Organisms
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CEE 6271: Flow-Porous Media I
3.00 Credits
Georgia Institute of Technology-Main Campus
Basic principles governing ground water flow. Topics covered: fundamental principles of saturated and unsaturated ground water flow, contaminant transport, and salt water intrusion.
Prerequisite:
Graduate Semester level CEE 6221 Minimum Grade of D
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CEE 6271 - Flow-Porous Media I
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CEE 6272: Flow-Porous Media II
3.00 Credits
Georgia Institute of Technology-Main Campus
Principles of numerical methods used in solving ground water flow, contaminant transport models, building on materials covered in CEE 6271. Topics: finite element, difference methods, saturated/unsaturated ground water flow, and contaminant transport.
Prerequisite:
Graduate Semester level CEE 6271 Minimum Grade of D
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CEE 6272 - Flow-Porous Media II
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CEE 6274: Flow-Heterogeneous Media
3.00 Credits
Georgia Institute of Technology-Main Campus
Advanced treatment of transport processes in natural porous media: classical description; stochastic description of variability; dynamic models; flow and transport in aquifers; model uncertainty.
Prerequisite:
Graduate Semester level CEE 6271 Minimum Grade of D
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CEE 6274 - Flow-Heterogeneous Media
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CEE 6281: Open Channel Hydraulics
0.00 - 3.00 Credits
Georgia Institute of Technology-Main Campus
Flow of liquids with free surfaces in artificial and natural channels. Analysis of flow resistance. Computation of gradually varied flow profiles. Flow through transitions, spillways, bridges, culverts. Analysis of unsteady flow.
Prerequisite:
Undergraduate Semester level CEE 4200 Minimum Grade of D
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CEE 6281 - Open Channel Hydraulics
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