SYNJET3C | Synthetic Jet flow Control CFD and Characterization

Summary
The objective of the project is is to develop scale models for the Synthetic Jet Actuator (SJA), that shall be used to enable the design of next generation SJA’s, compared to state of the art.
The development of this scale model is intented for improvement of performance predictions, and modelling accuracy of SJA actuators, for future applications. A demonstration rationale is therefore targeted, in order to enable accurate theoretical performance estimations, for given actuator configurations, calculated from geometrical input parameters, and transducer elements parameters.
In order to achieve such an objective, the project activities will focus first on analyses and tests of existing SJA’s designs, provided by the topic manager, in order to derive accurate numerical models, and achieve lessons learings, before designing, manufacturing, and testing of a third scale model.
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More information & hyperlinks
Web resources: https://cordis.europa.eu/project/id/754811
Start date: 01-10-2017
End date: 31-03-2021
Total budget - Public funding: 600 000,00 Euro - 600 000,00 Euro
Cordis data

Original description

The objective of the project is is to develop scale models for the Synthetic Jet Actuator (SJA), that shall be used to enable the design of next generation SJA’s, compared to state of the art.
The development of this scale model is intented for improvement of performance predictions, and modelling accuracy of SJA actuators, for future applications. A demonstration rationale is therefore targeted, in order to enable accurate theoretical performance estimations, for given actuator configurations, calculated from geometrical input parameters, and transducer elements parameters.
In order to achieve such an objective, the project activities will focus first on analyses and tests of existing SJA’s designs, provided by the topic manager, in order to derive accurate numerical models, and achieve lessons learings, before designing, manufacturing, and testing of a third scale model.

Status

CLOSED

Call topic

JTI-CS2-2016-CFP04-LPA-01-27

Update Date

27-10-2022
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