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3. A fluid self-excited dynamo

Published online by Cambridge University Press:  18 July 2016

Leverett Davis Jr.*
Affiliation:
California Institute of Technology, Pasadena, California, U.S.A.

Abstract

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The possibility that a simply connected perfectly conducting fluid body could generate an increasing external magnetic field by acting as a self-excited dynamo is demonstrated by exhibiting a cycle of motions that doubles the external field each cycle. The essential feature of the motion is that interior points become surface points. This requires points which were originally adjacent to become widely separated. The possibility of such motions is demonstrated and some of the conditions that might lead to their development are considered.

Type
Part I: Magneto-Hydrodynamics
Copyright
Copyright © Cambridge University Press 1958 

References

1. Larmor, J. Brit. Assoc. Reports (1919), 159; Engineering, 108, 461, 1919.Google Scholar
2. Cowling, T. G. Mon. Not. R. Astr. Soc. 94, 39, 1934.CrossRefGoogle Scholar
3. Elsasser, W. M. Phys. Rev. 69, 106, 1946; 70, 202, 1946; 72, 821, 1947.CrossRefGoogle Scholar
4. Bullard, E. C. Proc. Roy. Soc. A , 197, 433, 1949; 199, 413, 1949.Google Scholar
5. Parker, E. N. Astrophys. J. 122, 293, 1955.Google Scholar
6. Bondi, H. and Gold, T. Mon. Not. R. Astr. Soc. 110, 607, 1950.CrossRefGoogle Scholar
7. Truesdell, C. Phys. Rev. 78, 823, 1950.Google Scholar
8. Davis, L. Phys. Rev. 102, 939, 1956.Google Scholar