Lift Drag Characterization

Lift-drag characterization is the measurement and analysis of the aerodynamic forces that act on an object moving through a fluid, providing essential evidence for evaluating performance and stability. In engineering tests, researchers vary conditions such as airspeed and angle of attack, then use force balances or other measurement systems to determine lift and drag and calculate their corresponding coefficients. The resulting lift and drag curves reveal stall behavior, efficiency, and operating limits. This information supports the design and optimization of aircraft, wings, rotor systems, automotive components, and other fluid-dynamic structures, while also helping validate computational and theoretical models.

Lift Drag Characterization - Related Videos

Education

JoVE Science Education - Engineering

Buoyancy and Drag on Immersed Bodies

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2023

Source: Alexander S Rattner and Sanjay Adhikari; Department of Mechanical and Nuclear Engineering, The Pennsylvania State University, University Park, PA Objects, vehicles, and organisms immersed in fluid mediums experience forces from the surrounding fluid in the form of buoyancy- a vertical upward force due to fluid weight, drag- a resistive force opposite the direction of motion, and lift- a force perpendicular to the direction of motion. Prediction and characterization of these forces is...

Drag

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2025

Drag is a resistive force opposing an object’s motion through a fluid, resulting from surface pressure and shear forces. It comprises two components: a perpendicular one from pressure and a tangential one from shear stress. Accurate drag calculations use pressure and wall shear stress distributions, often determined through Computational Fluid Dynamics (CFD) or wind tunnel testing. The drag coefficient, a dimensionless measure, depends on factors like shape, Reynolds number, Mach number, Froude...

Lift

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2025

Lift is a fundamental aerodynamic force that acts perpendicular to the direction of airflow. It plays a central role in achieving and sustaining flight and in stabilizing various vehicles. Lift primarily originates from pressure differences created across surfaces, such as an airfoil. A lower pressure region forms above the wing, while a higher pressure region forms below it, generating an upward force. This differential results from the shape and orientation of the airfoil, enabling the wing...

Research

JoVE Journal - Behavior

Paw-Dragging: a Novel, Sensitive Analysis of the Mouse Cylinder Test

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Cited by 53 •

2015

Classical forelimb asymmetry analysis of the cylinder test is routinely used to assess behavioural deficits in rats following brain injury or stroke; however, it fails to detect consistent deficits in mice. This study demonstrates that quantifying paw-dragging behaviour is a more sensitive analysis of brain injury in mice.

Clark Y-14 Wing Performance: Deployment of High-lift Devices (Flaps and Slats)

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2023

Source: David Guo, College of Engineering, Technology, and Aeronautics (CETA), Southern New Hampshire University (SNHU), Manchester, New Hampshire A wing is the major lift-generating apparatus in an airplane. Wing performance can be further enhanced by deploying high-lift devices, such as flaps (at the trailing edge) and slats (at the leading edge) during takeoff or landing. In this experiment, a wind tunnel is utilized to generate certain airspeeds, and a Clark Y-14 wing with a flap and slat...

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