Numerical simulation of a rotary engine primary compressor impacted by bird |
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Authors: | Liu Jun Li Yulong |
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Affiliation: | School of Aeronautics, Northwestern Polytechnical University, Xi'an 710072, China |
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Abstract: | In order to examine the process of a rotary engine primary compressor impacted by bird, a finite element model of a bird impacted on plate is developed with the explicit code PAM-CRASH. The smooth particles hydrodynamic (SPH) method is used to simulate the bird because of the SPH method showing no signs of instability and correctly modeling the breaking-up of the bird into particles. Good agreement between the simulation results and experimental results indicates that the numerical method of bird strike used in the present paper is reasonable. Then a rotary engine primary compressor impacted by three different configurations bird named straight-ended cylinder bird, quadrangular bird, hemispherical-ended bird are investigated using the numerical simulation method. It is found that the whole process of bird strike sustained about 3.5 ms and the bird is slashed by blade during the strike. The geometry configuration of bird affected the displacement and von Mises stress of some blades severely, just because the breaking bird’s mass is affected by the bird’s configuration. In the event of bird striking on the site of “up” some blades may develop plastic deformation and it is very adverse for the safety work of the engine. |
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Keywords: | Bird strike Engine blade Numerical simulation PAM-CRASH SPH |
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