Aerodynamic Forces Exerted on an Articulated Body Subjected to Windblast.

Abstract

A potential flow solution is presented for estimating the pressure distribution around the forearm of a human body subjected to windblast. The forearm is examined in three positions: resting and pressing against an arm rest; resting, but not pressing against an arm rest; and not resting at all against any surface. Results show that a high-speed wind stream approaching the limb at some finite angle of attack has a tendency to dislodge the forearm from a surface with which it is in contact. This is due to the generation of stagnation points in the flow which lead to adverse pressure gradients as high as six times the free-stream dynamic pressure. Moreover, when the inviscid analysis is corrected for the effects of flow separation, it is possible to predict the presence of a pressure drag which acts to throw the forearm outward, away from the thorax. Both of these effects increase with angle of attack and they are mildly dependent on the taper of the forearm geometry. It is anticipated that a straightforward extension of the theory to other limbs of the body will shed some light on the general problem of flail injury occurring during high-speed ejections. (Author)

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Document Details

Document Type
Technical Report
Publication Date
Dec 01, 1976
Accession Number
ADA044217

Entities

People

  • Daniel J. Schneck

Organizations

  • Air Force Research Laboratory

Tags

Communities of Interest

  • Air Platforms
  • Biomedical
  • Space

DTIC Thesaurus Topics

  • Aerodynamic Forces
  • Aerodynamic Loading
  • Air Force
  • Biomedical Research
  • Boundary Layer
  • Computer Programming
  • Coordinate Systems
  • Flow Separation
  • Free Stream
  • Geometry
  • Ice
  • Joints (Anatomy)
  • Layers
  • Pressure Distribution
  • Pressure Gradients
  • Reynolds Number
  • Stagnation Point

Readers

  • Aerodynamics/Aeronautics.
  • Explosive Engineering.
  • Fluid Mechanics and Fluid Dynamics.