Effect of Plasma Temperature and Nonlinearity of the Adiabatic Compressibility Index on Flow Parameters for Hypersonic Aerosol Expansion Following a Plasma Disruption
Author:
Publisher
Springer Science and Business Media LLC
Subject
Nuclear Energy and Engineering,Nuclear and High Energy Physics
Link
http://link.springer.com/content/pdf/10.1007/s10894-015-9960-1.pdf
Reference24 articles.
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3. A.L. Winfrey, M.A. Abd Al-Halim, J.G. Gilligan, A.V. Saveliev, M.A. Bourham, Modeling of an ablation-free electrothermal plasma pellet accelerator. Fusion Sci. Technol. 60(2), 480–485 (2011)
4. T.E. Gebhart, R.T. Holladay, M.J. Esmond, A.L. Winfrey, Optimization of fusion pellet launch velocity in an electrothermal mass accelerator. J. Fusion Energ. 33(1), 29–32 (2014)
5. J.R. Echols, A.L. Winfrey, Ablation of fusion materials exposed to high heat flux in an electrothermal plasma discharge as a simulation for hard disruption. J. Fusion Energ. 33(1), 60–67 (2014)
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2. Radial Profile of Plasma Flow Parameters Following Evolution of Electrothermal Polycarbonate Plasma into a Large Chamber Simulating Impurity Expansion in Fusion Reactor Vacuum Vessel;Journal of Fusion Energy;2016-07-05
3. Temperature-Dependent Hypersonic Flow Patterns of Expanding High-Density Metal Vapor Plasma from Capillary Source Simulating Plasma Flow Following a Fusion Disruption;Journal of Fusion Energy;2015-10-14
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