Numerical Experiments on PF1000 Neutron Yield
Numerical experiments are carried out, using the Lee model code to compute the neutron yield Yn of PF1000 as a function of pressure. Computed results are compared with available published results of neutron yield. Relevant plasma focus properties such as peak discharge current Ipeak, pinch current I...
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my-inti-eprints.522016-10-05T03:31:08Z http://eprints.intimal.edu.my/52/ Numerical Experiments on PF1000 Neutron Yield Saw, S. H. Subedi, D. Khanal, R. Shrestha, R. Dugu, S. Lee, S. QC Physics Numerical experiments are carried out, using the Lee model code to compute the neutron yield Yn of PF1000 as a function of pressure. Computed results are compared with available published results of neutron yield. Relevant plasma focus properties such as peak discharge current Ipeak, pinch current Ipinch, pinch ion density ni and energy input into the pinch EINP are also discussed as functions of pressures so as to provide correlation of Yn with relevant plasma focus properties over the operational range of pressures. Springer US 2014-06-25 Article PeerReviewed text en http://eprints.intimal.edu.my/52/1/Numerical%20Experiments%20on%20PF1000%20Neutron%20Yield.pdf Saw, S. H. and Subedi, D. and Khanal, R. and Shrestha, R. and Dugu, S. and Lee, S. (2014) Numerical Experiments on PF1000 Neutron Yield. Journal of Fusion Energy, 33 (6). pp. 684-688. ISSN 1572-9591 10.1007/s10894-014-9731-4 |
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QC Physics Saw, S. H. Subedi, D. Khanal, R. Shrestha, R. Dugu, S. Lee, S. Numerical Experiments on PF1000 Neutron Yield |
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Numerical experiments are carried out, using the Lee model code to compute the neutron yield Yn of PF1000 as a function of pressure. Computed results are compared with available published results of neutron yield. Relevant plasma focus properties such as peak discharge current Ipeak, pinch current Ipinch, pinch ion density ni and energy input into the pinch EINP are also discussed as functions of pressures so as to provide correlation of Yn with relevant plasma focus properties over the operational range of pressures. |
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Article |
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Saw, S. H. Subedi, D. Khanal, R. Shrestha, R. Dugu, S. Lee, S. |
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Saw, S. H. Subedi, D. Khanal, R. Shrestha, R. Dugu, S. Lee, S. |
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Saw, S. H. |
title |
Numerical Experiments on PF1000 Neutron Yield |
title_short |
Numerical Experiments on PF1000 Neutron Yield |
title_full |
Numerical Experiments on PF1000 Neutron Yield |
title_fullStr |
Numerical Experiments on PF1000 Neutron Yield |
title_full_unstemmed |
Numerical Experiments on PF1000 Neutron Yield |
title_sort |
numerical experiments on pf1000 neutron yield |
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Springer US |
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2014 |
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http://eprints.intimal.edu.my/52/1/Numerical%20Experiments%20on%20PF1000%20Neutron%20Yield.pdf http://eprints.intimal.edu.my/52/ |
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