Fluid Dynamics and Aircraft Aerodynamics (MMME1030)

The University of Nottingham (UON)

Here are the best resources to pass Fluid Dynamics and Aircraft Aerodynamics (MMME1030). Find Fluid Dynamics and Aircraft Aerodynamics (MMME1030) study guides, notes, assignments, and much more.

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Bluff Bodies – Aerospace Engineering Notes (Fluid Dynamics & Aerodynamics PDF)
  • Lecture notes

    Bluff Bodies – Aerospace Engineering Notes (Fluid Dynamics & Aerodynamics PDF)

  • These notes provide a concise and exam-ready overview of bluff body aerodynamics, focusing on how flow behaves around non-streamlined shapes. Essential for aerospace and mechanical engineering courses dealing with drag, flow separation, and applied aerodynamics. Topics covered: Definition of bluff bodies vs. streamlined bodies Flow separation and wake formation Pressure drag and viscous effects Reynolds number effects on bluff body flow Examples of bluff bodies in engineering ...
  • joelcooper
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Standard Atmosphere – Fluid Dynamics & Aerodynamics Notes (Aerospace Engineering)
  • Lecture notes

    Standard Atmosphere – Fluid Dynamics & Aerodynamics Notes (Aerospace Engineering)

  • These Standard Atmosphere notes are perfect for aerospace engineering and physics students who want a clear, concise, and exam-focused resource. Covers all key topics: Geometric Altitude, Absolute Altitude, Geopotential Altitude Troposphere & Stratosphere characteristics Equation of State for a Perfect Gas Hydrostatic Equation explained step-by-step Key constants and units for aerodynamics and fluid dynamics Why these notes will save you time: All essential formulas, co...
  • joelcooper
    £6.98 More Info
Aerostatics, Buoyancy & Pressure – Aerospace Engineering Notes (Exam-Ready PDF)
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    Aerostatics, Buoyancy & Pressure – Aerospace Engineering Notes (Exam-Ready PDF)

  • These notes provide a clear and concise overview of Aerostatics, Buoyancy, and Pressure, tailored for aerospace engineering and physics students. Ideal for revision, coursework, and quick reference. Topics covered: Hydrostatics and buoyancy on solid bodies Net buoyancy force and hydrostatic force equations Gas balloon buoyancy (air vs. helium) Pressure measurement: static, dynamic, and total pressure Absolute vs. gauge pressure Pressure head, manometer readings, and baromet...
  • joelcooper
    £7.46 More Info
Turbulent Pipe Flow – Fluid Mechanics Notes (Aerospace & Mechanical Engineering PDF)
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    Turbulent Pipe Flow – Fluid Mechanics Notes (Aerospace & Mechanical Engineering PDF)

  • These notes provide a clear, concise overview of turbulent flow in pipes, focusing on velocity profiles, friction, and engineering calculations. Perfect for aerospace, mechanical, and chemical engineering students studying real-world fluid transport, energy losses, and pressure drop in turbulent regimes. Topics covered: Definition of turbulent vs. laminar flow Reynolds number and transition to turbulence Velocity profiles in turbulent pipe flow Friction factor correlations: Moody...
  • joelcooper
    £7.56 More Info
Streamlines in Fluid Dynamics – Aerospace Engineering Notes (Qualitative & Exam-Ready)
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    Streamlines in Fluid Dynamics – Aerospace Engineering Notes (Qualitative & Exam-Ready)

  • These notes provide a clear, concise explanation of streamlines in fluid dynamics, an essential concept for aerospace and mechanical engineering students. Streamlines are the foundation of visualising flow fields, making them critical for understanding aerodynamics. Topics covered: Definition of streamlines in fluid flow Physical interpretation: velocity vectors and flow direction Streamlines vs. pathlines and streaklines (qualitative comparison) Applications of streamlines in ae...
  • joelcooper
    £5.86 More Info
Laminar Pipe Flow – Fluid Mechanics Notes (Aerospace & Mechanical Engineering PDF)
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    Laminar Pipe Flow – Fluid Mechanics Notes (Aerospace & Mechanical Engineering PDF)

  • These notes provide a concise, exam-focused overview of laminar flow in pipes, emphasizing the physical behavior, governing equations, and engineering applications. Essential for aerospace, mechanical, and chemical engineering courses dealing with viscous flows, pressure drop, and flow rate calculations. Topics covered: Definition of laminar vs. turbulent flow Hagen–Poiseuille equation and derivation Velocity profiles in circular pipes Pressure drop and friction factor in lamin...
  • joelcooper
    £7.66 More Info
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