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pro vyhledávání: '"C. G. Gnegy-Davidson"'
Publikováno v:
IEEE Transactions on Plasma Science. 45:1539-1544
The U.S. Navy is getting much closer to fielding shipboard railguns. As they get closer, there is increasing concern with how corrosion of the rail surface will affect launcher performance and lifetime, with it intuitively hypothesized that corrosion
Publikováno v:
IEEE Transactions on Plasma Science. 45:1419-1428
As the U.S. Navy gets closer to fielding shipboard railguns; there is an increasing concern with how surface corrosion of the rail claddings will affect launcher performance and lifetime. It is intuitive to hypothesize that corrosion on the rail surf
Autor:
C. G. Gnegy-Davidson, David A. Wetz
Publikováno v:
IEEE Transactions on Plasma Science. 44:2065-2071
The future naval fleet will deploy many electrical loads aboard them, many of which will be pulsed power loads that operate in a transient manner and generate high electromagnetic fields. It remains unclear to what extent high magnetic fields will af
Autor:
C. G. Gnegy Davidson, David A. Dodson, John M. Heinzel, David A. Wetz, Matthew Jene Martin, C. S. Westenhover
Publikováno v:
2017 IEEE Electric Ship Technologies Symposium (ESTS).
The high combined power and energy density of lithium-ion batteries give them great potential for being used as the prime power source for several future naval shipboard pulsed power applications. To meet the power and energy requirements, multiple l