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CEE 550: Hydroclimatology
4.00 Credits
University of Illinois at Urbana-Champaign
Application of deterministic and probabilistic concepts to simulate and analyze hydrologic systems; discussion of the theory and application of linear and nonlinear, lumped, and distributed systems techniques in modeling the various phases of the hydrologic cycle. Prerequisite: CEE 450.
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CEE 550 - Hydroclimatology
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CEE 551: Open-Channel Hydraulics
4.00 Credits
University of Illinois at Urbana-Champaign
Advanced hydraulics of free surface flow in rivers and open channels; discussion of theory, analytical and numerical solution techniques, and their applications to gradually and rapidly varied nonuniform flows, unsteady flow, and flow in open-channel networks. Prerequisite: CEE 451.
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CEE 551 - Open-Channel Hydraulics
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CEE 552: River Basin Management
4.00 Credits
University of Illinois at Urbana-Champaign
Introduction to the multidisciplinary knowledge (hydrology, economics, systems engineering, etc.) and methodological skills (optimization, simulation, etc.) for river basic management. River basin characterization-natural and social features; water availability assessment based on hydrology, infrastructure, and policy; environmental flow requirements; water demand management and microeconomics theory; integrated river basic management modeling. Prerequisite: CEE 350 and CEE 434.
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CEE 552 - River Basin Management
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CEE 555: Mixing in Environmental Flows
4.00 Credits
University of Illinois at Urbana-Champaign
Physical processes involved in transport of pollutants by water; turbulent diffusion and longitudinal dispersion in rivers, pipes, lakes, and the ocean; diffusion in turbulent jets, buoyant jets, and plumes. Prerequisite: MATH 241 or MATH 380; MATH 285; TAM 335.
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CEE 555 - Mixing in Environmental Flows
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CEE 557: Groundwater Modeling
4.00 Credits
University of Illinois at Urbana-Champaign
Theory and application of numerical methods, finite differences and finite element, for solving the equations of groundwater flow and solute transport; transport of chemically reacting solutes; model calibration and verification. Same as CSE 565. Prerequisite: CEE 457 and MATH 285.
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CEE 557 - Groundwater Modeling
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CEE 559: Sediment Transport
4.00 Credits
University of Illinois at Urbana-Champaign
Physical processes of transportation and deposition of sediment particles in liquid bodies with particular emphasis on fluvial sediment problems; sediment in desilting basins; reservoirs and delta formation; erosion; stable channel design; river morphology. Prerequisite: CEE 551.
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CEE 559 - Sediment Transport
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CEE 560: Steel Structures III
4.00 Credits
University of Illinois at Urbana-Champaign
Theories of ultimate behavior of metal structural members with emphasis on buckling and stability of members and frames; theory of torsion applied to beam torsion, lateral-torsional buckling, curved beams with emphasis on design criteria; post-buckling strength of plates and post-buckling versus column behavior. Prerequisite: CEE 462.
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CEE 560 - Steel Structures III
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CEE 561: Reinforced Concrete III
4.00 Credits
University of Illinois at Urbana-Champaign
Behavior of reinforced concrete members, including the relationships between behavior and building code requirements. Prerequisite: CEE 463.
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CEE 561 - Reinforced Concrete III
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CEE 563: Reinforced Concrete IV
4.00 Credits
University of Illinois at Urbana-Champaign
Strength and behavior of assemblages of reinforced concrete members, including applicability of traditional elastic design procedures to structures which exhibit inelastic behavior under the influence of both short and long term loadings. Prerequisite: CEE 561.
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CEE 563 - Reinforced Concrete IV
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CEE 570: Finite Element Methods
4.00 Credits
University of Illinois at Urbana-Champaign
Theory and application of the finite element method; stiffness matrices for triangular, quadrilateral, and isoparametric elements; two- and three-dimensional elements; algorithms necessary for the assembly and solution; direct stress and plate bending problems for static, nonlinear buckling and dynamic load conditions; displacement, hybrid, and mixed models together with their origin in variational methods. Same as CSE 551. Prerequisite: CEE 471 or TAM 551.
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CEE 570 - Finite Element Methods
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