Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air

The electrical characteristics of a filamentary dielectric barrier discharge (DBD) are studied experimentally and numerically. The DBD system which has parallel plate electrodes geometry is powered by a 50 Hz power supply and operated at atmospheric air. A dynamic electric circuit model considering...

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Main Authors: Tay, W.H., Yap, S.L., Wong, C.S.
Format: Article
Language:English
Published: Universiti Kebangsaan Malaysia 2014
Online Access:http://journalarticle.ukm.my/7053/1/12_W.H._Tay.pdf
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author Tay, W.H.
Yap, S.L.
Wong, C.S.
author_facet Tay, W.H.
Yap, S.L.
Wong, C.S.
author_sort Tay, W.H.
collection UKM
description The electrical characteristics of a filamentary dielectric barrier discharge (DBD) are studied experimentally and numerically. The DBD system which has parallel plate electrodes geometry is powered by a 50 Hz power supply and operated at atmospheric air. A dynamic electric circuit model considering the discharge region and the non-discharge region being connected by a surface resistance is proposed. Simulation using this model is shown to fit the experimentally measured QV diagram satisfactorily. The effects of the air gap distance and the dielectric surface on the discharge behavior are then investigated. It is found that the surface resistivity of the dielectric is one of the important parameters governing the discharge behavior.
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spelling ukm.eprints-70532016-12-14T06:42:58Z http://journalarticle.ukm.my/7053/ Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air Tay, W.H. Yap, S.L. Wong, C.S. The electrical characteristics of a filamentary dielectric barrier discharge (DBD) are studied experimentally and numerically. The DBD system which has parallel plate electrodes geometry is powered by a 50 Hz power supply and operated at atmospheric air. A dynamic electric circuit model considering the discharge region and the non-discharge region being connected by a surface resistance is proposed. Simulation using this model is shown to fit the experimentally measured QV diagram satisfactorily. The effects of the air gap distance and the dielectric surface on the discharge behavior are then investigated. It is found that the surface resistivity of the dielectric is one of the important parameters governing the discharge behavior. Universiti Kebangsaan Malaysia 2014-04 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/7053/1/12_W.H._Tay.pdf Tay, W.H. and Yap, S.L. and Wong, C.S. (2014) Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air. Sains Malaysiana, 43 (4). pp. 583-594. ISSN 0126-6039 http://www.ukm.my/jsm/
spellingShingle Tay, W.H.
Yap, S.L.
Wong, C.S.
Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air
title Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air
title_full Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air
title_fullStr Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air
title_full_unstemmed Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air
title_short Electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air
title_sort electrical characteristics and modeling of a filamentary dielectric barrier discharge in atmospheric air
url http://journalarticle.ukm.my/7053/1/12_W.H._Tay.pdf
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AT yapsl electricalcharacteristicsandmodelingofafilamentarydielectricbarrierdischargeinatmosphericair
AT wongcs electricalcharacteristicsandmodelingofafilamentarydielectricbarrierdischargeinatmosphericair