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MEE 550: Mech Engr Project
1.00 - 6.00 Credits
University of Dayton
Student participation in a departmental research, design, or development project under the direction of a project advisor. The student must show satisfactory progress as determined by the project advisor and present a written report at the conclusion of t
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MEE 550 - Mech Engr Project
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MEE 551: Noise & Vibr Control
3.00 Credits
University of Dayton
The concepts of noise and vibration control applied to mechanical systems. Methodologies covered will include: passive treatments using resistive elements (sound absorbers, vibration damping) and reactive elements (tailoring of material stiffness and mass
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MEE 551 - Noise & Vibr Control
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MEE 552: Boundry Layer Thry
3.00 Credits
University of Dayton
Development of the Prandtl boundary layer approximation in two and three dimensions for both compressible and incompressible flow. Exact and approximate solutions for laminar flows. Unsteady boundary layers. Linear stability theory and transition to turbu
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MEE 552 - Boundry Layer Thry
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MEE 553: Compressible Flow
3.00 Credits
University of Dayton
Fundamental equations of compressible flow. Introduction to flow in two and three dimensions. Two-dimensional supersonic flow, small perturbation theory, method of characteristics, oblique shock theory. Introduction to unsteady one-dimensional motion and
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MEE 553 - Compressible Flow
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MEE 555: Turbulence
3.00 Credits
University of Dayton
Origin, evolution, and dynamics of fully turbulent flows. Description of statistical theory, spectral dynamics, and the energy cascade. Characteristics of wall-bounded and free turbulent shear flows. Reynolds stress models.
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MEE 555 - Turbulence
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MEE 558: Compu Fluid Dyn
3.00 Credits
University of Dayton
Numerical solution to Navier-Stokes equations and approximations such as the boundary layer equations for air-flow about a slender body. Numerical techniques for the solution of the transonic small disturbance equations. Numerical determination of fluid
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MEE 558 - Compu Fluid Dyn
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MEE 560: Propulsion Systems
3.00 Credits
University of Dayton
Introduction and history, types of propulsion systems, thermodynamics review and simple cycle analysis, thermodynamics of high speed gas flow, aircraft gas turbine engine, parametric cycle analysis of various types of gas turbine engines, component and en
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MEE 560 - Propulsion Systems
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MEE 565: Fund of Combustion
3.00 Credits
University of Dayton
Heat of combustion and flame temperature calculations; rate of chemical reaction and Arrhenius relationship; theory of thermal explosions and the concept of ignition delay and critical mass; phenomena associated with hydrocarbon-air combustion; specific a
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MEE 565 - Fund of Combustion
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MEE 566: Combustion Theory
3.00 Credits
University of Dayton
Theory of detonation (Rankine-Hugoniot relationships) and flame propagation rates in pre-gas mixed systems; turbulent flames and the well stirred reactor; theory of diffusion flames; fuel droplet combustion; steady burning of solid materials, ignition and
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MEE 566 - Combustion Theory
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MEE 567: Smrt Structrs & Mtls
3.00 Credits
University of Dayton
Smart structures and materials overview. Components of materials, sensing, actuation, and modeling. Electro-mechanical and thermo-mechanical modeling of SMA and piezo-ceramic materials. Elements of control, sensing, and vibration theory. Examples of u
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MEE 567 - Smrt Structrs & Mtls
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