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

Maxwell's equations are solved to determine transient electromagnetic fields inside as well as outside 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 interruption o...

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Main Authors: Mukerji, Saurabh Kumar, Singh, Ghanshyam Kumar, Goel, Sandeep Kumar, Manuja, Seema
Format: Article
Published: E M W PUBLISHING 2007
Subjects:
Online Access:http://shdl.mmu.edu.my/3119/
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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 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 interruption of the d. c. current in 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 plates with smaller value of relaxation time. It is also shown that the energy dissipated in the eddy current loss may exceed the energy stored in the initial magnetic field.
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spelling mmu-31192011-10-04T02:46:38Z http://shdl.mmu.edu.my/3119/ A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE CONDUCTING PLATE DUE TO CURRENT IMPACT EXCITATION Mukerji, Saurabh Kumar Singh, Ghanshyam Kumar Goel, Sandeep Kumar Manuja, Seema T Technology (General) QA75.5-76.95 Electronic computers. Computer science Maxwell's equations are solved to determine transient electromagnetic fields inside as well as outside 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 interruption of the d. c. current in 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 plates with smaller value of relaxation time. It is also shown that the energy dissipated in the eddy current loss may exceed the energy stored in the initial magnetic field. E M W PUBLISHING 2007 Article NonPeerReviewed Mukerji, Saurabh Kumar and Singh, Ghanshyam Kumar and Goel, Sandeep Kumar and Manuja, Seema (2007) A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE CONDUCTING PLATE DUE TO CURRENT IMPACT EXCITATION. Progress In Electromagnetics Research, 76. 15-29 . ISSN 1559-8985 http://dx.doi.org/10.2528/PIER07052901 doi:10.2528/PIER07052901 doi:10.2528/PIER07052901
spellingShingle T Technology (General)
QA75.5-76.95 Electronic computers. Computer science
Mukerji, Saurabh Kumar
Singh, Ghanshyam Kumar
Goel, Sandeep Kumar
Manuja, Seema
A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE CONDUCTING PLATE DUE TO CURRENT IMPACT EXCITATION
title A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE CONDUCTING PLATE DUE TO CURRENT IMPACT EXCITATION
title_full A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE CONDUCTING PLATE DUE TO CURRENT IMPACT EXCITATION
title_fullStr A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE CONDUCTING PLATE DUE TO CURRENT IMPACT EXCITATION
title_full_unstemmed A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE CONDUCTING PLATE DUE TO CURRENT IMPACT EXCITATION
title_short A THEORETICAL STUDY OF ELECTROMAGNETIC TRANSIENTS IN A LARGE CONDUCTING PLATE DUE TO CURRENT IMPACT EXCITATION
title_sort theoretical study of electromagnetic transients in a large conducting plate due to current impact excitation
topic T Technology (General)
QA75.5-76.95 Electronic computers. Computer science
url http://shdl.mmu.edu.my/3119/
http://shdl.mmu.edu.my/3119/
http://shdl.mmu.edu.my/3119/