detailed unsteady simulation of a counterrotating aspirated compressor with a focus on the aspiration slot and plenum

detailed unsteady simulation of a counterrotating aspirated compressor with a focus on the aspiration slot and plenum

;Robert D. Knapke;Mark G. Turner
ACS omega 2013 Vol. 2013 pp. -
70
knapke2013internationaldetailed

Abstract

An unsteady analysis of the MIT counterrotating aspirated compressor (CRAC) has been conducted using the Numeca FINE/Turbo 3D viscous turbulent flow solver with the Nonlinear Harmonic (NLH) method. All three blade rows plus the aspiration slot and plenum were included in the computational domain. Both adiabatic and isothermal solid wall boundary conditions were applied and simulations with and without aspiration were completed. The aspirated isothermal boundary condition solutions provide the most accurate representation of the trends produced by the experiment, particularly at the endwalls. These simulations provide significant insight into the flow physics of the aspiration flow path. Time histories and spanwise distributions of flow properties in the aspiration slot and plenum present a flow field with significant temporal and spatial variations. In addition, the results provide an understanding of the aspiration flow path choking mechanism that was previously not well understood and is consistent with experimental results. The slot and plenum had been designed to aspirate 1% of the flow path mass flow, whereas the experiment and simulations show that it chokes at about 0.5% mass flow.

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ID: 257094
Ref Key: knapke2013internationaldetailed
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257094
Unique Identifier:
10.1155/2013/857616
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Scimatic Chain (ID: 481)
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