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  • AIRCRAFT PROPULSION AND POWER
  • Chemistry
  • Life and Medical Sciences
  • SOLAR PHYSICS
  • 1975-1979
  • 1950-1954  (1)
  • 1945-1949
  • 1951  (1)
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  • 1975-1979
  • 1950-1954  (1)
  • 1945-1949
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  • 1
    Publication Date: 2019-06-28
    Description: Investigations have been made in flight and in wind tunnels to determine which components of turbojet installations are most critical in icing conditions, and to evaluate several methods of icing protection. From these studies, the requirements necessary for adequate icing protection and the consequent penalties on engine performance can be estimated. Because investigations have indicated that the compressor-inlet screen constitutes the greatest icing hazard and is difficult to protect, complete removal or retraction of the screen upon encountering an icing condition is recommended. In the absence of the screen, the inlet guide vanes of an axial-flow-type turbojet engine constitute the greatest danger to engine operation in an icing condition; a centrifugal-type engine, on the other hand, is relatively unsusceptible to icing once the screen has been removed. Of the three icing-protection systems investigated, surface heating, hot-gas bleedback, and inertia-separation inlets, only the first two offer an acceptable solution to the problem of engine icing protection. Surface heating, either by gas heating or electrical means, appears to be the most acceptable icing-protection method with regard to performance losses. Hot-gas bleedback, although causing undesirable thrust losses, offers an easy means of obtaining icing protection for some installations. The final choice of an icing-protection system depends, however, on the supply of heated gas and electrical power available and on the allowable performance and. weight penalties associated with each system.
    Keywords: AIRCRAFT PROPULSION AND POWER
    Type: NACA-RM-E51B12
    Format: application/pdf
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