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The serpentine plasma actuator represents a broad class of
plasma actuator Plasma actuators are a type of actuator currently being developed for active aerodynamic flow control (fluid), flow control. Plasma (physics), Plasma actuators impart force in a similar way to ionocraft. Plasma flow control has drawn considerable ...
. The actuators vary from the standard type in that their electrode geometry has been modified in to be periodic across its span.


History

This class of plasma actuators was developed at the Applied Physics Research Group (APRG) at the
University of Florida The University of Florida (Florida or UF) is a public university, public land-grant university, land-grant research university in Gainesville, Florida, United States. It is a senior member of the State University System of Florida and a preem ...
in 2008 by
Subrata Roy Subrata Roy (10 June 1948 – 14 November 2023) was an Indian businessman who founded the business conglomerate Sahara India Pariwar in 1978. Sahara India Pariwar operated a vast number of businesses, such as Aamby Valley City, Sahara Movi ...
for the purpose of controlling laminar and
turbulent In fluid dynamics, turbulence or turbulent flow is fluid motion characterized by chaotic changes in pressure and flow velocity. It is in contrast to laminar flow, which occurs when a fluid flows in parallel layers with no disruption between ...
boundary layer In physics and fluid mechanics, a boundary layer is the thin layer of fluid in the immediate vicinity of a Boundary (thermodynamic), bounding surface formed by the fluid flowing along the surface. The fluid's interaction with the wall induces ...
flows. Since then, APRG has continued to characterize and develop uses for this class of plasma actuators. Several patents resulted from the early work on serpentine geometry plasma actuators. In 2013, these actuators started to get broader attention in the scientific press, and several articles were written about these actuators, including articles in AIP's EurekAlert, Inside Science and various blogs.


Current research and operating mechanisms

Serpentine plasma actuators (like other Dielectric Barrier Discharge actuators, i.e.
plasma actuator Plasma actuators are a type of actuator currently being developed for active aerodynamic flow control (fluid), flow control. Plasma (physics), Plasma actuators impart force in a similar way to ionocraft. Plasma flow control has drawn considerable ...
s) are able to induce an atmospheric plasma and introduce an electrohydrodynamic body force to a fluid. This body force can be used to implement flow control, and there are a range of potential applications, including drag reduction for aircraft and flow stabilization in combustion chambers. The important distinction between serpentine plasma actuators and more traditional geometries is that the geometry of the electrodes has been modified in order to be periodic across its span. As the electrode has been made periodic, the resulting plasma and body force are also spanwise periodic. With this spanwise periodicity, three-dimensional flow effects can be induced in the flow, which cannot be done with more traditional plasma actuator geometries. It is thought that the introduction of three-dimensional flow effects allow for the plasma actuators to apply much greater levels of control authority as they allow for the plasma actuators to project onto a greater range of physical mechanisms (such as boundary layer streaks or secondary instabilities of the Tollmien-Schlichting wave). Recent work indicate that these plasma actuators may have a significant impact on controlling laminar and transitional flows on a flat plate. In addition, the serpentine actuator has been experimentally demonstrated to increase lift, decrease drag and generate controlling rolling moments when applied to aircraft wing geometries. With the greater level of control authority that these plasma actuators may potentially possess, there is currently research being performed at several labs in the
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and in the
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looking to apply these actuators for real world applications. Recent numerical work predicted significant turbulent drag reduction by collocating serpentine plasma actuators in a pattern to modify energetic modes of transitional flow.


See also

*
Plasma actuator Plasma actuators are a type of actuator currently being developed for active aerodynamic flow control (fluid), flow control. Plasma (physics), Plasma actuators impart force in a similar way to ionocraft. Plasma flow control has drawn considerable ...
* Wingless Electromagnetic Air Vehicle * Applied Physics Research Group *
University of Florida The University of Florida (Florida or UF) is a public university, public land-grant university, land-grant research university in Gainesville, Florida, United States. It is a senior member of the State University System of Florida and a preem ...
* University of Florida College of Engineering


References

{{DEFAULTSORT:Serpentine geometry plasma actuator Plasma technology and applications Actuators