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Le Chi KIEN. Analyses on the Ionization Instability of Non-Equilibrium Seeded Plasma in an MHD Generator[J]. Plasma Science and Technology, 2016, 18(6): 674-679. DOI: 10.1088/1009-0630/18/6/15
Citation: Le Chi KIEN. Analyses on the Ionization Instability of Non-Equilibrium Seeded Plasma in an MHD Generator[J]. Plasma Science and Technology, 2016, 18(6): 674-679. DOI: 10.1088/1009-0630/18/6/15

Analyses on the Ionization Instability of Non-Equilibrium Seeded Plasma in an MHD Generator

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  • Received Date: March 08, 2015
  • Recently, closed cycle magnetohydrodynamic power generation system research has been focused on improving the isentropic efficiency and the enthalpy extraction ratio. By reducing the cross-section area ratio of the disk magnetohydrodynamic generator, it is believed that a high isentropic efficiency can be achieved with the same enthalpy extraction. In this study, the result relating to a plasma state which takes into account the ionization instability of non-equilibrium seeded plasma is added to the theoretical prediction of the relationship between enthalpy extraction and isentropic efficiency. As a result, the electron temperature which reaches the seed complete ionization state without the growth of ionization instability can be realized at a relatively high seed fraction condition. However, the upper limit of the power generation performance is suggested to remain lower than the value expected in the low seed fraction condition. It is also suggested that a higher power generation performance may be obtained by implementing the electron temperature range which reaches the seed complete ionization state at a low seed fraction.
  • 1 Aithal S M. 2009, Energy Conversion and Management, 50: 765 2 Saidi M H, Montazeri A. 2007, Energy, 32: 1603 3 Aithal S M. 2008, International Journal of Thermal Sciences, 47: 778 4 Avrilios Lazaros. 2001, Fusion Engineering and Design, 53: 35 5 Kholodov Y A, Kholodov A S, Stupitzki E L, et al.2004, Computer Physics Communications, 164: 91 6 Shinji Takeshita, Chainarong Buttapeng, Nob Harada.2009, Vacuum, 84: 685 7 Trelles J P, Modirkhazeni S M. 2014, Computer Methods in Applied Mechanics and Engineering, 282: 87 8 Yamasaki H, Okuno Y, Torii S, et al. 1999, Improvement of disk MHD generator performance by inlet swirl. 30th Plasmadynamic and Lasers Conference, Norfolk (VA), AIAA-1999-3658
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