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Course Criteria
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0.00 - 3.00 Credits
This is an introductory course of Computational Fluid Dynamics (CFD). The course covers the basic concepts underlying the computational fluid dynamics including derivation of governing equations, discretization, grid generation, applications of numerical methods, error reduction and solution testing, and interpretation of numerical results. Commercial CFD software packages will be used to solve practical engineering fluid dynamic problems. Offered: Other
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0.00 - 3.00 Credits
This is an introductory course of Computational Fluid Dynamics (CFD). The course covers the basic concepts underlying the computational fluid dynamics including derivation of governing equations, discretization, grid generation, applications of numerical methods, error reduction and solution testing, and interpretation of numerical results. Commercial CFD software packages will be used to solve practical engineering fluid dynamic problems. Offered: Other
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3.00 Credits
Phase equilibria and phase diagrams, kinetics and microstructure of structural methods will be taught. Students will also be introduced to mechanical properties, composite materials and engineering design. Prerequisite: MEEN 4319 Offered: Other
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3.00 Credits
Theoretical considerations in casting, bulk deformation, sheetmetal forming, polymers parts machining and welding process will be taught in this manufacturing course. Prerequisite: INEN 3322 Offered: Other
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3.00 Credits
The important and fudamental consideration of gas turbines heat transfer and cooling are introduced. Different aspects of internal cooling and film cooling technologies are discussed. State-of-the-art experimental design and numerical modeling related to gas turbines heat transfer and cooling are presented. Prerequisite: MEEN 3310, MEEN 3311 Offered: Other
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3.00 Credits
Students will learn fundamental of energy conservation and management, energy audit procedures, energy conservation analysis and technologies to improve energy efficiency. Prerequisite: MEEN 3310 and MEEN 3380 Offered: Other
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3.00 Credits
The course covers selected topics of advanced engineering mathematics and their applications to engineering. The topics include analytical and numerical solutions of ordinary and partial differential equations, vector differential calculus and integral theorems, probability and statistics, and optimization. Offered: Fall
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3.00 Credits
Advanced techniques and analysis involving microcomputers, finite elements, finite differences. May be repeated for credit when the subject matter varies. Offered: Other
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3.00 Credits
Students will learn fundamentals of energy conservation and manageent, energy audit procedures, energy conservation analysis, and technologies to improve energy efficiency. Offered: Other
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3.00 Credits
This course deals with different types of energy conversion devices and systems, including conventional heat engines, solar thermal systems, photovoltaic (PV), and future energy systems such as Stirling engines, microturbines, fuel cells, IGCC, and hydrogen-based energy systems. The course also introduces the theoretical background for direct energy conversion devices such as MHD, thermoelectric, and thermionic systems.
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