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r-z two-dimensional numerical Simulations of a frozen inert gas plasma MHD Generator

机译:冷冻惰性气体等离子体MHD发生器的r-z二维数值模拟

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In a magnetohydrodynamics (MHD) power generation with a frozen inert gas plasma (FIP), the effect of the nonuniformity of the inlet plasma in the direction perpendicular to walls on the performance and the comparison of the performance with r-/spl theta/ two-dimensional (2-D) numerical simulations are examined with r-z 2-D ones. The inlet nonuniformity of an ionization degree is kept throughout the channel and even in the boundary layer the state of the FIP is realized without an ionization instability. When the inlet ionization degree near the walls is higher than that in the main flow, the enthalpy extraction ratio decreases because the strong MHD interaction near the wall leads to the development of the boundary layer. On the other hand, it increases for the inverse distribution at the channel inlet, even if the introduced total inlet ionization degree is the same. In comparison with the results obtained from the r-/spl theta/ simulation, the development of the boundary layer results in the deterioration of the performance, and the optimal condition shifts to the low inlet ionization degree and the high load resistance.
机译:在具有冻结惰性气体等离子体(FIP)的磁流体动力学(MHD)发电中,进口等离子体在垂直于壁的方向上的不均匀性对性能的影响以及r- / spl theta / 2的性能比较使用rz 2-D模拟二维(2-D)数值模拟。在整个通道中保持电离度的入口不均匀性,并且即使在边界层中,也可以实现FIP的状态而不会发生电离不稳定性。当壁附近的入口电离度高于主流时,由于壁附近的强MHD相互作用导致边界层的发展,因此焓提取率降低。另一方面,即使引入的总入口电离度相同,对于通道入口处的逆分布,它也会增加。与从r- / spl theta /模拟获得的结果相比,边界层的发展导致性能下降,并且最佳条件转移到低入口电离度和高负载电阻。

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