Khaled Sallam

Associate Professor

Mechanical & Aerospace Engineering

TEACHING

  • COURSE TAUGHT
    Mechanical and Aerospace Engineering Projects
    8 Jun 2026 - 31 Jul 2026
    Project in research assigned by the student's advisor.Offered for variable credit, 1-9 credit hours, maximum of 9 credit hours.
  • COURSE TAUGHT
    Advanced Study
    12 Jan 2026 - 1 May 2026
    Study and investigation under the supervision of a member of the faculty along lines of interest well advanced of and supported by the 5000-series courses.Offered for variable credit, 1-12 credit hours, maximum of 12 credit hours.Prerequisite(s): Approval of the student's advisory committee.
  • COURSE TAUGHT
    Doctoral Dissertation
    12 Jan 2026 - 1 May 2026
    Independent research under the direct supervision of the student's doctoral dissertation adviser.Offered for variable credit, 1-15 credit hours, maximum of 42 credit hours.Prerequisite(s): Admission to MAE PhD program and consent of the student's dissertation adviser.
  • COURSE TAUGHT
    Energy Conversion Systems
    12 Jan 2026 - 1 May 2026
    This course covers the use of renewable and non-renewable energy sources in power production. Energy conversion processes are analyzed, and performance characteristics of components and systems are modeled using modern computational methods. Applications include overall design of conventional Rankine power systems and may also include design of nuclear, solar, wind, wave, thermoelectric, and geothermal energy systems.Prerequisite(s): Grades of 'C' or higher in MAE 3153 and MAE 3524.
  • COURSE TAUGHT
    Energy Conversion Systems
    12 Jan 2026 - 1 May 2026
    This course covers the use of renewable and non-renewable energy sources in power production. Energy conversion processes are analyzed, and performance characteristics of components and systems are modeled using modern computational methods. Applications include overall design of conventional Rankine power systems and may also include design of nuclear, solar, wind, wave, thermoelectric, and geothermal energy systems.Prerequisite(s): Grades of 'C' or higher in MAE 3153 and MAE 3524.
  • COURSE TAUGHT
    Fundamental Fluid Dynamics
    12 Jan 2026 - 1 May 2026
    Fluid statics; conservation of mass, momentum and energy in fixed and moving control volumes; steady and unsteady Bernoulli's equation; fluid kinematics and differential analysis of fluid flow; Navier-Stokes equations and exact solutions; dimensional analysis and similitude; laminar and turbulent flow; internal flows; boundary layer theory; lift and drag; pumps.Prerequisite(s): Concurrent in (ENGR 2421 or MAE 3113) and Grades of 'C' or higher in ENSC 2113 and MATH 2153.
  • COURSE TAUGHT
    Fundamental Fluid Dynamics
    12 Jan 2026 - 1 May 2026
    Fluid statics; conservation of mass, momentum and energy in fixed and moving control volumes; steady and unsteady Bernoulli's equation; fluid kinematics and differential analysis of fluid flow; Navier-Stokes equations and exact solutions; dimensional analysis and similitude; laminar and turbulent flow; internal flows; boundary layer theory; lift and drag; pumps.Prerequisite(s): Concurrent in (ENGR 2421 or MAE 3113) and Grades of 'C' or higher in ENSC 2113 and MATH 2153.
  • COURSE TAUGHT
    Doctoral Dissertation
    18 Aug 2025 - 5 Dec 2025
    Independent research under the direct supervision of the student's doctoral dissertation adviser.Offered for variable credit, 1-15 credit hours, maximum of 42 credit hours.Prerequisite(s): Admission to MAE PhD program and consent of the student's dissertation adviser.
  • COURSE TAUGHT
    Fluids and Hydraulics Lab
    18 Aug 2025 - 5 Dec 2025
    Laboratory providing hands-on experience with standard measurement techniques of fluid mechanics and their applications. Develop and conduct appropriate experimentation, analyses and interpret data to draw conclusions using engineering judgment. Comparison of analytical models introduced in an introductory fluid mechanics course to the actual behavior of real fluid flows. Preparation of formal reports, including the presentation of plots, figures, and tables.Prerequisite(s): Concurrent enrollment in ENSC 3233 or MET 3313 or FPST 2483 or MAE 3333 or permission of instructor.
  • COURSE TAUGHT
    Thermal Fluids Design
    18 Aug 2025 - 5 Dec 2025
    Design, modeling and simulation of thermal systems. Analysis and modeling of components such as fans, pumps, ducts, pipes, fittings, heat exchangers, and heat pumps.Prerequisite(s): Grades of “C” or higher in ENSC 2213 and MAE 3153 and MAE 3233 and MAE 3333.
  • COURSE TAUGHT
    Thermal Fluids Design
    18 Aug 2025 - 5 Dec 2025
    Design, modeling and simulation of thermal systems. Analysis and modeling of components such as fans, pumps, ducts, pipes, fittings, heat exchangers, and heat pumps.Prerequisite(s): Grades of “C” or higher in ENSC 2213 and MAE 3153 and MAE 3233 and MAE 3333.
  • COURSE TAUGHT
    Doctoral Dissertation
    9 Jun 2025 - 1 Aug 2025
    Independent research under the direct supervision of the student's doctoral dissertation adviser.Offered for variable credit, 1-15 credit hours, maximum of 42 credit hours.Prerequisite(s): Admission to MAE PhD program and consent of the student's dissertation adviser.
  • COURSE TAUGHT
    Doctoral Dissertation
    13 Jan 2025 - 2 May 2025
    Independent research under the direct supervision of the student's doctoral dissertation adviser.Offered for variable credit, 1-15 credit hours, maximum of 42 credit hours.Prerequisite(s): Admission to MAE PhD program and consent of the student's dissertation adviser.
  • COURSE TAUGHT
    Energy Conversion Systems
    13 Jan 2025 - 2 May 2025
    This course covers the use of renewable and non-renewable energy sources in power production. Energy conversion processes are analyzed, and performance characteristics of components and systems are modeled using modern computational methods. Applications include overall design of conventional Rankine power systems and may also include design of nuclear, solar, wind, wave, thermoelectric, and geothermal energy systems.Prerequisite(s): Grades of 'C' or higher in MAE 3153 and MAE 3524.
  • COURSE TAUGHT
    Energy Conversion Systems
    13 Jan 2025 - 2 May 2025
    This course covers the use of renewable and non-renewable energy sources in power production. Energy conversion processes are analyzed, and performance characteristics of components and systems are modeled using modern computational methods. Applications include overall design of conventional Rankine power systems and may also include design of nuclear, solar, wind, wave, thermoelectric, and geothermal energy systems.Prerequisite(s): Grades of 'C' or higher in MAE 3153 and MAE 3524.
  • COURSE TAUGHT
    Gas Dynamics
    13 Jan 2025 - 2 May 2025
    This course will be used as a temporary number for new graduate course offerings or special one-time only graduate course offerings. Repeat credit may be earned with different course subtitles assigned. Offered for 3 credit hours and no set maximum of credit hours obtained.Prerequisite(s): Graduate standing or consent of instructor.
  • COURSE TAUGHT
    Doctoral Dissertation
    19 Aug 2024 - 6 Dec 2024
    Independent research under the direct supervision of the student's doctoral dissertation adviser.Offered for variable credit, 1-15 credit hours, maximum of 42 credit hours.Prerequisite(s): Admission to MAE PhD program and consent of the student's dissertation adviser.
  • COURSE TAUGHT
    Experimental Fluid Dynamics
    19 Aug 2024 - 6 Dec 2024
    Experimental study of basic and applied fluid dynamics systems with comparisons to analytical predictions. Fluid dynamics instrumentation, digital data acquisition and processing, design of facilities and experiments, technical report writing and design project with experimental verification.Prerequisite(s): Grades of 'C' or higher in MAE 3333 and (MAE 3113 or [ENGR 2421 and ENSC 3231]).
  • COURSE TAUGHT
    Experimental Fluid Dynamics
    19 Aug 2024 - 6 Dec 2024
    Experimental study of basic and applied fluid dynamics systems with comparisons to analytical predictions. Fluid dynamics instrumentation, digital data acquisition and processing, design of facilities and experiments, technical report writing and design project with experimental verification.Prerequisite(s): Grades of 'C' or higher in MAE 3333 and (MAE 3113 or [ENGR 2421 and ENSC 3231]).
  • COURSE TAUGHT
    Experimental Fluid Dynamics
    19 Aug 2024 - 6 Dec 2024
    Fundamental topics that are typically introduced in the undergraduate senior year curriculum with additional depth and breadth commensurate with the graduate program. Repeat credit may be earned with different course subtitles assigned.Offered for 3 credit hours, maximum of 9 credit hours allowed.Prerequisite(s): Graduate standing or consent of instructor.
  • COURSE TAUGHT
    Experimental Fluid Dynamics
    19 Aug 2024 - 6 Dec 2024
    Fundamental topics that are typically introduced in the undergraduate senior year curriculum with additional depth and breadth commensurate with the graduate program. Repeat credit may be earned with different course subtitles assigned.Offered for 3 credit hours, maximum of 9 credit hours allowed.Prerequisite(s): Graduate standing or consent of instructor.
  • COURSE TAUGHT
    Thermal Fluids Design
    19 Aug 2024 - 6 Dec 2024
    Design, modeling and simulation of thermal systems. Analysis and modeling of components such as fans, pumps, ducts, pipes, fittings, heat exchangers, and heat pumps.Prerequisite(s): Grades of “C” or higher in ENSC 2213 and MAE 3153 and MAE 3233 and MAE 3333.
  • COURSE TAUGHT
    Thermal Fluids Design
    19 Aug 2024 - 6 Dec 2024
    Design, modeling and simulation of thermal systems. Analysis and modeling of components such as fans, pumps, ducts, pipes, fittings, heat exchangers, and heat pumps.Prerequisite(s): Grades of “C” or higher in ENSC 2213 and MAE 3153 and MAE 3233 and MAE 3333.
  • COURSE TAUGHT
    Doctoral Dissertation
    10 Jun 2024 - 2 Aug 2024
    Independent research under the direct supervision of the student's doctoral dissertation adviser.Offered for variable credit, 1-15 credit hours, maximum of 42 credit hours.Prerequisite(s): Admission to MAE PhD program and consent of the student's dissertation adviser.
  • COURSE TAUGHT
    Combustion
    16 Jan 2024 - 3 May 2024
    Chemical thermodynamics, chemical kinetics, conservation equations for reacting systems, premixed laminar flames, diffusion flames, turbulent flames, mechanism reduction and chemistry solvers, combustion diagnostics, new combustion technologies.Prerequisite(s): Graduate standing or consent of instructor.