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Drag reduction due to recirculating bubble control using plasma actuator on a squareback model
by
Julian, James
, Budiarso
, Harinaldi
, Karim, Riza Farrash
in
Air flow
/ Bubbles
/ Computational fluid dynamics
/ Drag measurement
/ Drag reduction
/ Experiments
/ Flow characteristics
/ Flow control
/ Fluid flow
/ Plasma
/ Pressure distribution
/ Reynolds number
/ Stress concentration
/ Visualization
2018
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Drag reduction due to recirculating bubble control using plasma actuator on a squareback model
by
Julian, James
, Budiarso
, Harinaldi
, Karim, Riza Farrash
in
Air flow
/ Bubbles
/ Computational fluid dynamics
/ Drag measurement
/ Drag reduction
/ Experiments
/ Flow characteristics
/ Flow control
/ Fluid flow
/ Plasma
/ Pressure distribution
/ Reynolds number
/ Stress concentration
/ Visualization
2018
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Do you wish to request the book?
Drag reduction due to recirculating bubble control using plasma actuator on a squareback model
by
Julian, James
, Budiarso
, Harinaldi
, Karim, Riza Farrash
in
Air flow
/ Bubbles
/ Computational fluid dynamics
/ Drag measurement
/ Drag reduction
/ Experiments
/ Flow characteristics
/ Flow control
/ Fluid flow
/ Plasma
/ Pressure distribution
/ Reynolds number
/ Stress concentration
/ Visualization
2018
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Drag reduction due to recirculating bubble control using plasma actuator on a squareback model
Journal Article
Drag reduction due to recirculating bubble control using plasma actuator on a squareback model
2018
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Overview
Flow control on a squareback object which resembles many engineering related objects is believed to be highly beneficial. One of the flow characteristics behind the object, recirculating bubble, is known to play significant role in pressure distribution. Meanwhile, plasma actuator implementation on such object is still underdeveloped in application basis. This paper focuses on acquiring a deeper understanding of plasma actuator effect on flow phenomenon behind a squareback object, especially on its application to recirculating bubble control in order to reduce drag. The experiment was divided into drag measurement experiment and visualization experiment. The drag measurement result shows that plasma actuator succeeded on reducing drag up to 15.36% in the lowest Reynolds number. Meanwhile, the visualization experiment shows that plasma actuator has shifted the recirculating bubble position to be closer to the object’s wall.
Publisher
EDP Sciences
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