Students
Tuition Fee
Start Date
Medium of studying
Duration
Details
Program Details
Degree
Bachelors
Major
Mechanical Engineering | Mechatronics
Area of study
Engineering
Course Language
English
About Program

Program Overview


Academics

Undergraduate Program

The undergraduate program at SJTU Global College offers various degrees and programs, including:


  • Mechanical Engineering Program
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  • Materials Science and Engineering Program The program also includes:
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Graduate Program

The graduate program at SJTU Global College includes:


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Courses

The courses offered at SJTU Global College include:


  • Courses Directory by Number
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The academic integrity policy at SJTU Global College includes:


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The international programs at SJTU Global College include:


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The teaching labs at SJTU Global College include:


  • Labs
    • Room 310A- Circuits Lab
    • Room 310C – Mechatronics Lab
    • Room 310B – General Engineering Lab (A)
    • Room 310D – Mechanical Engineering Lab
    • Room 310E – Design & Manufacturing Lab
    • Room 310F – General Engineering Lab (B)
    • Room 228 – Optics Lab
    • Room 118 Solid Mechanical Lab
    • Room 124、130 Machine Shop
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The education centers at SJTU Global College include:


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Courses Detail Information

ME3200J – Fluid Mechanics

  • Instructors: Lipo Wang; Zijie Qu;Chien-pin Chen
  • Credits: 3
  • Pre-requisites: ME2350J, ME2400J, and MATH2160J/2560J/2860J
  • Description: Fluid statics; Reynolds transport theorem, conservation of mass, momentum and energy in fixed and moving control volumes, governing equations; steady and unsteady Bernoulli’s equation; kinematics; applications of the Reynolds transport theorem, dimensional analysis and similitude; laminar and turbulent flow; boundary layers; lift and drag; compressible flows.
  • Course Topics:
    1. Fluid properties, fluid forces, and flow regimes.
    2. Fluid statics.
    3. Flow kinematics.
    4. Reynolds transport theorem and derivation of conservation laws of mass, momentum and energy in fixed, deforming, and moving control volumes, applications of the Reynolds transport theorem.
    5. The steady and unsteady Bernoulli equation along and normal to a streamline.
    6. Similitude, dimensional analysis.
    7. Viscous flow in pipes and channels (laminar and turbulent flow regimes, the Moody chart, head loss equation), exact and approximate solutions.
    8. External flow, boundary layer concept, lift and drag, pressure and friction drag, streamlining and drag reduction.
    9. Basic introduction of the compressible flow
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