DocumentCode
2685903
Title
RCS predictions and measurements of a full size jet engine model
Author
Chan, K.K. ; Wong, S. ; Riseborough, E.
Author_Institution
Chan Technol. Inc., Brampton, Ont., Canada
fYear
2005
fDate
3-8 July 2005
Firstpage
97
Abstract
Most of the industrial software codes used for the prediction of the radar cross-sections (RCS) of aircraft are based on ray tracing. While ray based methods give useful scattered fields from the skin of the aircraft illuminated by an incident plane wave, they largely fail to predict the returns from onboard cavities, such as the jet engines. As a possible enhancement to these ray-tracing programs, an auxiliary program based on the modal method was developed to predict the scattering of electrically large and complex jet inlets and engines. Monostatic RCS measurements of a 0.706 m diameter test cylinder containing 30 skewed blades mounted on a center shaft with a conical hub have been performed at X-band. The dimensions of the structure and the number and orientation of the blades are consistent with existing jet engines. Good agreement between predictions and measurements verify the developed software and analytical method used.
Keywords
blades; computational electromagnetics; computer software; electromagnetic wave scattering; jet engines; modal analysis; radar computing; radar cross-sections; 0.706 m; RCS prediction; X-band; jet engine model; jet inlets; modal method; monostatic RCS measurements; onboard cavities; ray tracing; scattering; Aerospace industry; Aircraft propulsion; Blades; Computer industry; Jet engines; Predictive models; Radar cross section; Radar scattering; Ray tracing; Size measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Antennas and Propagation Society International Symposium, 2005 IEEE
Print_ISBN
0-7803-8883-6
Type
conf
DOI
10.1109/APS.2005.1552185
Filename
1552185
Link To Document