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  • 3.00 Credits

    Modeling of vibratory mechanical systems with single and multiple degrees of freedom. Study of free and forced vibrations with or without damping by lumped-parameter methods and finite element analysis. Vibrations of rotor systems and vibration stability. Prerequisites: ES F210, ES F301. Offered Fall Prerequisite:    ES F210 UF C- AND ES F301 UF C-
  • 3.00 Credits

    Analysis and design of control systems. Block diagrams, transfer functions and frequency analysis. Closed loop systems and system stability. Industrial controllers and system compensation. Prerequisites: ES F301. Offered As Demand Warrants Prerequisite:    ES F301 UF C-
  • 3.00 Credits

    Design of thermal and heating, ventilation, and air-conditioning (HVAC) systems with emphasis on economic considerations and optimization. Concepts of thermodynamics, fluid mechanics and heat transfer will be integrated under a design framework. A semester long project is conducted to design a thermal system, perform system simulations, and to optimize the design based on economic and technical considerations. Prerequisites: ES F341; ES F346. Offered As Demand Warrants Prerequisite:    (ES F346 UF C- AND ES F341 UF C- )
  • 3.00 Credits

    Testing and evaluation of components and energy systems such as pumps, fans, engines, heat exchangers, refrigerators and heating/power plants. Prerequisites: ME F308 (may be taken concurrently); WRTG F111X; ES F341; ME F313; ME F441. Offered Spring Prerequisite:    ES F341 UF C- AND ME F308 UF C- Concurrent AND ME F313 UF C- AND ME F441 UF C- (AND CORE F1 UF T T OR CORE F1AA UF T T OR CORE F1AS UF T T OR ENGL F111X UF C- OR WRTG F111X UF C- OR WRTG F1X UF C- OR ENGL F1X UF C- OR ENGL F211X UF C- OR ENGL F212 UF C- OR ENGL F213X UF C- OR ENGL F2X UF C- OR WRTG F214X UF C- OR WRTG F213X UF C- OR WRTG F212X UF C- OR WRTG F211X UF C- OR WRTG F2X UF C- OR EACE 60 OR S11 710 OR SATE 1340 )
  • 3.00 Credits

    Design, selection and operation of equipment used in production and processing of crude oil and gas. Instrumentation and control systems used with mechanical equipment. Prerequisites: ES F341; ES F346. Offered Fall Prerequisite:    ES F341 UF C- AND ES F346 UF C-
  • 3.00 Credits

    Overview of basic concepts and principles of fluids at the micron scale; introduction to the design and fabrication of microfluidic devices. Prerequisites: ES F341 (may be taken concurrently); PHYS F103X (for Math and non-Physics science major); PHYS F211X (for Engineering, Math and Physics major); junior standing. Stacked with ME F640. Offered Spring Odd-numbered Years Prerequisite:    (PHYS F103X UF C- OR PHYS F211X UF C- )
  • 3.00 Credits

    Application of heat and mass transfer concepts to engineering problems including steady state and transient conduction, numerical analysis of heat transfer problems, laminar and turbulent free and forced convection, and black body and real surface radiation. Prerequisites: ES F301; ES F341; ES F346. Offered Fall Prerequisite:    ES F301 UF C- AND ES F341 UF C- AND ES F346 UF C-
  • 3.00 Credits

    Description of nanofluids, nanostructured materials and dispersion in base fluids. Thermophysical properties: density, viscosity, thermal conductivity and specific heat. Theoretical equations and empirical correlations for properties. Principles of measurements of properties. Fluid dynamic losses and pumping power required for nanofluid flow in heat transfer systems. Experimental methods of determining the convective heat transfer coefficient of nanofluids. Practical application to heat exchangers in industries. Nanofluids flows in mini- and microchannels. Prerequisites: ES F341; ME F441; senior standing. Stacked with ME F643. Offered As Demand Warrants Prerequisite:    ES F341 UF C- AND ME F441 UF C-
  • 3.00 Credits

    Airfoil theory in subsonic flow. Performance, stability and control of aircraft. Aircraft design. Prerequisites: ES F341 (may be taken concurrently); ES F346. Offered Fall Even-numbered Years Prerequisite:    ES F346 UF C- AND ES F341 UF C- Concurrent AND ES F341 UF C- Concurrent
  • 3.00 Credits

    Aerodynamics of non-lifting and lifting airfoils in incompressible irrotational flow, wings of finite span, the Navier-Stokes equations, boundary layers, numerical methods, supersonic and transonic flow past airfoils, rocket aerodynamics, rocket drag. Prerequisites: ES F341 (may be taken concurrently); ES F301; ES F346. Offered Spring Odd-numbered Years Prerequisite:    ES F301 UF C- AND ES F346 UF C- AND ES F341 UF C- Concurrent
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