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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Aerofoil Pressure Distributions – Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)
  • Lecture notes

    Aerofoil Pressure Distributions – Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)

  • These notes provide a focused overview of pressure distributions over aerofoils, essential for understanding lift, drag, and aerodynamic performance. Perfect for aerospace and mechanical engineering students needing clear, exam-ready insights into how pressure varies along aerofoil surfaces. Topics covered: Pressure coefficient (Cp) definition and interpretation Upper and lower surface pressure variations Effects of angle of attack on pressure distribution Stall and flow separati...
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Aerofoil & Dimensional Analysis – Aerodynamics & Fluid Mechanics Notes (Aerospace/Mechanical PDF)
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    Aerofoil & Dimensional Analysis – Aerodynamics & Fluid Mechanics Notes (Aerospace/Mechanical PDF)

  • These notes offer a clear, concise overview of aerofoil aerodynamics and dimensional analysis, combining theory, formulas, and practical applications. Essential for aerospace, mechanical, and aeronautical engineering students tackling lift, drag, and scaling problems in fluid dynamics. Topics covered: Aerofoil Section: Definition and classification of aerofoils Lift, drag, and moment coefficients Pressure distribution and boundary layer effects Angle of attack, stall, and flow...
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Flow Regimes & Reynolds Number – Aerospace Engineering Notes (Laminar, Turbulent, Transitional)
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    Flow Regimes & Reynolds Number – Aerospace Engineering Notes (Laminar, Turbulent, Transitional)

  • Clear, exam-ready notes on Flow Regimes in fluid dynamics and aerodynamics, essential for aerospace engineering students. These notes summarise the most important concepts from laminar flow to turbulence, including the critical role of the Reynolds number. Topics covered: Laminar vs. Turbulent flow: characteristics and examples Transitional flows and their importance in aerospace Osborne Reynolds’ classic experiment (1883) explained Reynolds number: definition, derivations, and...
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Viscous Flow – Aerospace Engineering Notes (Fluid Dynamics PDF, Exam-Ready)
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    Viscous Flow – Aerospace Engineering Notes (Fluid Dynamics PDF, Exam-Ready)

  • These notes give a clear and structured summary of viscous flow, a core topic in fluid dynamics and aerospace engineering. Perfect for building intuition about flow resistance, drag, and real-world fluid behaviour. Topics covered: Definition of viscosity and viscous effects in fluids Flow regimes in viscous fluids (laminar, transitional, turbulent) Characteristics of laminar flow vs. turbulent flow Osborne Reynolds’ classic experiment explained Reynolds number and its role i...
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Aerofoil Stall & Lift Augmentation – Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)
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    Aerofoil Stall & Lift Augmentation – Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)

  • These notes provide a clear, exam-focused overview of aerofoil stall phenomena and lift augmentation techniques, essential for understanding wing performance under critical conditions. Perfect for aerospace and mechanical engineering students studying aircraft aerodynamics, safety, and performance optimization. Topics covered: Definition and causes of stall in aerofoils Critical angle of attack and flow separation Effects of Reynolds number and aerofoil shape on stall Stall chara...
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Finite Wing & Induced Drag – Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)
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    Finite Wing & Induced Drag – Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)

  • These notes provide a focused, exam-ready overview of finite wing aerodynamics and induced drag, highlighting how 3D effects influence lift and overall wing performance. Perfect for aerospace and mechanical engineering students studying aircraft design, wing efficiency, and aerodynamic forces. Topics covered: Difference between 2D (infinite) and 3D (finite) wing lift Concept of wingtip vortices and downwash Induced drag: origin and calculation Lift distribution along a finite win...
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Control Volume & Mass Conservation – Aerospace Engineering Notes (Fluid Dynamics PDF)
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    Control Volume & Mass Conservation – Aerospace Engineering Notes (Fluid Dynamics PDF)

  • These notes provide a concise and exam-focused overview of Control Volume analysis and Mass Conservation in fluid dynamics — essential for aerospace and mechanical engineering courses. Topics covered: Dimensional flows and flow rate relationships Incompressible vs. compressible flows explained Mass conservation equations with derivations Momentum flow rate and momentum equation Worked example: force required to stop a moving plate Why these notes are valuable: All cor...
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Aerofoil Lift – Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)
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    Aerofoil Lift – Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)

  • These notes provide a clear, exam-focused overview of lift generation on aerofoils, linking theory, equations, and practical applications. Essential for aerospace and mechanical engineering students studying wing performance, aircraft design, and fluid mechanics. Topics covered: Definition of lift and its physical origin Bernoulli’s principle and pressure differences Lift coefficient (Cl) and its calculation Effect of angle of attack on lift Thin aerofoil theory and camber e...
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Compressible Flows – Fluid Dynamics & Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)
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    Compressible Flows – Fluid Dynamics & Aerodynamics Notes (Aerospace/Mechanical Engineering PDF)

  • These notes provide a concise, exam-ready overview of compressible flow theory, emphasizing the behavior of gases at high speeds. Essential for aerospace and mechanical engineering students studying supersonic and transonic aerodynamics, shock waves, and high-speed fluid systems. Topics covered: Difference between incompressible and compressible flow Mach number and flow regimes: subsonic, transonic, supersonic, hypersonic Continuity, momentum, and energy equations for compressible ...
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Euler & Bernoulli Equations – Aerospace Engineering Notes (Fluid Dynamics PDF)
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    Euler & Bernoulli Equations – Aerospace Engineering Notes (Fluid Dynamics PDF)

  • These notes provide a clear and exam-ready summary of the Euler and Bernoulli equations, fundamental tools in fluid dynamics and aerospace engineering. Perfect for fast revision, coursework, or as a teaching resource. Topics covered: Euler’s Equation: derivation, assumptions, and applications Bernoulli’s Equation: steady, incompressible flow energy balance Relationship between pressure, velocity, and elevation Practical applications in aerospace and mechanical systems Work...
  • joelcooper
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