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Optimization of air jet pump design for acoustic application

Objective

"According to the call topic, the goal of the project is to optimize the design of a subsonic jet pump, to reduce as much as possible the noise level. The optimization of the subsonic jet pump will be done from the aerodynamic point of view and two type of analyses will be used, a RANS analysis as a “fast-screening” procedure to be able to identify using such techniques a trend in the flow behavior when performing a parameter study and a time dependent analysis with the more time-consuming but more accurate and more reliable, Large Eddy Simulation, for only the most promising or thought-provoking configurations. The acoustic treatment for further reducing the noise levels of the jet pump, in any configuration, is the application of noise treatment in the mixing part, and/or in the diffuser. From the acoustic treatment standpoint, there are two ways of attaching the noise reduction problem. First, the passive acoustic treatment, and second, which will be considered in the following, composed of resonant - absorbent structures. Tanking into consideration the aerodynamic optimization and the acoustic treatment a demonstrator with different configurations will be tested in the anechoic chamber where the velocity field and acoustics will be measured and compared with the numerical results."
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Coordinator

INSTITUTUL NATIONAL DE CERCETARE-DEZVOLTARE TURBOMOTOARE - COMOTI

Address

Iuliu Maniu Avenue 220d, Sector 6
061126 Bucharest 6

Romania

Activity type

Research Organisations

EU Contribution

€ 137 562,50

Administrative Contact

Luminita Precob (Mrs.)

Participants (1)

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KUNGLIGA TEKNISKA HOEGSKOLAN

Sweden

EU Contribution

€ 75 000

Project information

Grant agreement ID: 325977

Status

Closed project

  • Start date

    1 April 2013

  • End date

    31 July 2015

Funded under:

FP7-JTI

  • Overall budget:

    € 298 000

  • EU contribution

    € 212 562,50

Coordinated by:

INSTITUTUL NATIONAL DE CERCETARE-DEZVOLTARE TURBOMOTOARE - COMOTI

Romania