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AuthorAbdelaziz, Aya Fekry
AuthorTrinchero, Daniele
AuthorKhattab, Tamer
Available date2022-11-01T09:01:33Z
Publication Date2012
Publication NameProgress In Electromagnetics Research M
ResourceScopus
Resource2-s2.0-84860212062
URIhttp://dx.doi.org/10.2528/PIERM12021910
URIhttp://hdl.handle.net/10576/35705
AbstractIn this paper, the electromagnetic field distribution inside a jet engine is studied through full wave analysis. Results are statistically analyzed by comparisons to the models used for the reverberation chamber with a mechanical mode stirrer. The jet engine is simulated as an open cylinder containing one set of rotating blades by using 'Ansys HFSS'. A simple Hertzian dipole illuminates the interior structure as an incident wave excitation representing a transmitting antenna radiating continuous wave fields. The field distribution inside the engine, which results from a distinct set of rotating positions of the blades, is primarily studied through the simulation program. In our case, the mechanical stirrer is represented by the rotating set of blades. The field values are extracted at different planes along the cylindrical engine, and the average field is statistically analyzed. We show that the squared magnitude of the field component along the engine's main axis has an exponential distribution compared to the theoretical exponential distribution proved in a reverberation chamber. This approach promises to act as a novel effective method to analyze the engine system without dealing with the complex details inside the engine cavity.
Languageen
PublisherElectromagnetics Academy
SubjectAnechoic chambers
Antenna radiation
Electromagnetic fields
Engines
Jet engines
Reverberation
Electromagnetic field distribution
Exponential distributions
Field distribution
Full wave analysis
Interior structure
Reverberation chambers
Simulation program
Transmitting antenna
Engine cylinders
TitleStatistical analysis of electromagnetic field inside a jet engine using the reverberation chamber approach
TypeArticle
Pagination157-165
Volume Number24
dc.accessType Abstract Only


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