2D radiation magnetohydrodynamic calculations of a doped deuterium gas puff experiment on Z
Summary form only given. A few years ago, double-shell deuterium gas puff experiments were performed on the Z accelerator with the objective of investigating the production efficiency of thermal neutrons using a Z pinch approach. Analytic estimates and 1-D and 2-D simulations predicted thermal neutr...
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Sprache: | eng |
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Zusammenfassung: | Summary form only given. A few years ago, double-shell deuterium gas puff experiments were performed on the Z accelerator with the objective of investigating the production efficiency of thermal neutrons using a Z pinch approach. Analytic estimates and 1-D and 2-D simulations predicted thermal neutron yields of ~5x10 13 , which was in agreement with the neutron yields measured on Z. Since the neutron yield is shown to scale as I 4 where I is the peak current of the pinch and ZR should produce -30% more current than Z, neutron yields on the order of 5x10 16 are predicted to be possible with the use of D-T. In order to accommodate the large currents of ZR, new larger diameter load are being evaluated by performing 2-D r-z simulations with the ALEGRA MHD code. These simulations will be described in this work. |
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ISSN: | 0730-9244 2576-7208 |
DOI: | 10.1109/PLASMA.2009.5227591 |