Modeling and Detection of Ice Particle Accretion in Aircraft Engine Compression Systems
Author(s) -
Ryan May,
Donald L. Simon,
Ten-Huei Guo
Publication year - 2012
Publication title -
aiaa atmospheric flight mechanics conference
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2012-4649
Subject(s) - compression (physics) , computer science , aerospace engineering , environmental science , remote sensing , geology , materials science , engineering , composite material
The accretion of ice particles in the core of commercial aircraft engines has been an ongoing aviation safety challenge. While no accidents have resulted from this phenomenon to date, numerous engine power loss events ranging from uneventful recoveries to forced landings have been recorded. As a first step to enabling mitigation strategies during ice accretion, a detection scheme must be developed that is capable of being implemented on board modern engines. In this paper, a simple detection scheme is developed and tested using a realistic engine simulation with approximate ice accretion models based on data from a compressor design tool. These accretion models are implemented as modified Low Pressure Compressor maps and have the capability to shift engine performance based on a specified level of ice blockage. Based on results from this model, it is possible to detect the accretion of ice in the engine core by observing shifts in the typical sensed engine outputs. Results are presented in which, for a 0.1% false positive rate, a true positive detection rate of 98% is achieved.
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