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An Experimental and Theoretical Study of the Ice Accretion Process During Artificial and Natural Icing Conditions

An Experimental and Theoretical Study of the Ice Accretion Process During Artificial and Natural Icing Conditions

          
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About the Book

Real-time measurements of ice growth during artificial and natural icing conditions were conducted using an ultrasonic pulse-echo technique. This technique allows ice thickness to be measured with an accuracy of + or - 0.5 mm; in addition, the ultrasonic signal characteristics may be used to detect the presence of liquid on the ice surface and hence discern wet and dry ice growth behavior. Ice growth was measured on the stagnation line of a cylinder exposed to artificial icing conditions in the NASA Lewis Icing Research Tunnel (IRT), and similarly for a cylinder exposed in flight to natural icing conditions. Ice thickness was observed to increase approximately linearly with exposure time during the initial icing period. The ice accretion rate was found to vary with cloud temperature during wet ice growth, and liquid runback from the stagnation region was inferred. A steady-state energy balance model for the icing surface was used to compare heat transfer characteristics for IRT and natural icing conditions. Ultrasonic measurements of wet and dry ice growth observed in the IRT and in flight were compared with icing regimes predicted by a series of heat transfer coefficients. The heat transfer magnitude was generally inferred to be higher for the IRT than for the natural icing conditions encountered in flight. An apparent variation in the heat transfer magnitude was also observed for flights conducted through different natural icing-cloud formations. Kirby, Mark S. and Hansman, R. John Unspecified Center AIRCRAFT HAZARDS; DEPOSITION; FLIGHT TESTS; ICE FORMATION; WATER VAPOR; WIND TUNNEL TESTS; ACCURACY; CLOUDS; HEAT TRANSFER; PHASE TRANSFORMATIONS; SUPERCOOLING; THICKNESS; ULTRASONIC TESTS...


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Product Details
  • ISBN-13: 9781731249340
  • Publisher: Amazon Digital Services LLC - KDP Print US
  • Publisher Imprint: Independently Published
  • Height: 279 mm
  • No of Pages: 138
  • Spine Width: 8 mm
  • Width: 216 mm
  • ISBN-10: 1731249349
  • Publisher Date: 13 Nov 2018
  • Binding: Paperback
  • Language: English
  • Returnable: N
  • Weight: 335 gr


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