A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION

Maxwell's equations are solved to determine transient electromagnetic fields inside as well as outside of a large conducting plate of an arbitrary thickness. The plate is carrying a uniformly distributed excitation winding on its surfaces. Transient fields are produced due to sudden application...

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Main Authors: Mukerji, Saurabh Kumar, Singh, Ghanshyam Kumar, Goel, Sandeep Kumar, Manuja, Seema
Format: Article
Published: E M W PUBLISHING 2008
Subjects:
Online Access:http://shdl.mmu.edu.my/2781/
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author Mukerji, Saurabh Kumar
Singh, Ghanshyam Kumar
Goel, Sandeep Kumar
Manuja, Seema
author_facet Mukerji, Saurabh Kumar
Singh, Ghanshyam Kumar
Goel, Sandeep Kumar
Manuja, Seema
author_sort Mukerji, Saurabh Kumar
building MMU Institutional Repository
collection Online Access
description Maxwell's equations are solved to determine transient electromagnetic fields inside as well as outside of a large conducting plate of an arbitrary thickness. The plate is carrying a uniformly distributed excitation winding on its surfaces. Transient fields are produced due to sudden application of a d.c. voltage at the terminals of the excitation winding. On the basis of a linear treatment of this initial value problem it is concluded that the transient fields may decay at a faster rate for conducting plates with smaller values of relaxation time. It is also shown that the growth of flux in a perfectly nonconducting plate is a piecewise linear function of time and the current in its excitation winding is a series of step function of time.
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spelling mmu-27812011-09-14T05:01:07Z http://shdl.mmu.edu.my/2781/ A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION Mukerji, Saurabh Kumar Singh, Ghanshyam Kumar Goel, Sandeep Kumar Manuja, Seema T Technology (General) QC Physics Maxwell's equations are solved to determine transient electromagnetic fields inside as well as outside of a large conducting plate of an arbitrary thickness. The plate is carrying a uniformly distributed excitation winding on its surfaces. Transient fields are produced due to sudden application of a d.c. voltage at the terminals of the excitation winding. On the basis of a linear treatment of this initial value problem it is concluded that the transient fields may decay at a faster rate for conducting plates with smaller values of relaxation time. It is also shown that the growth of flux in a perfectly nonconducting plate is a piecewise linear function of time and the current in its excitation winding is a series of step function of time. E M W PUBLISHING 2008 Article NonPeerReviewed Mukerji, Saurabh Kumar and Singh, Ghanshyam Kumar and Goel, Sandeep Kumar and Manuja, Seema (2008) A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION. Progress In Electromagnetics Research, 78. pp. 377-392. ISSN 1559-8985 http://dx.doi.org/10.2528/PIER07091302 doi:10.2528/PIER07091302 doi:10.2528/PIER07091302
spellingShingle T Technology (General)
QC Physics
Mukerji, Saurabh Kumar
Singh, Ghanshyam Kumar
Goel, Sandeep Kumar
Manuja, Seema
A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION
title A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION
title_full A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION
title_fullStr A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION
title_full_unstemmed A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION
title_short A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE PLATE DUE TO VOLTAGE IMPACT EXCITATION
title_sort theoretical study of electromagnetic transients in a large plate due to voltage impact excitation
topic T Technology (General)
QC Physics
url http://shdl.mmu.edu.my/2781/
http://shdl.mmu.edu.my/2781/
http://shdl.mmu.edu.my/2781/