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Study on numerical design method of frozen inert gas plasma MHD generators

机译:冷冻惰性气体等离子体MHD发电机数值设计方法研究

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摘要

A numerical design method to determine basic specifications of high-performance frozen inert gas plasma (FIP) MHD generators is proposed. To validate the proposed method, time-dependent, two-dimensional (r-z)MHD numerical analyses are performed for several FIP MHD generators with different thermal inputs (30, 100, 300, or 1000 MW) designed by the proposed method. The numerical results indicate that the designed FIP MHD generators with the thermal input of 100 MW or more are able to be operated with the performance approximately same as the designed one. For the designed MHD generator with the thermal input of 30 MW; however, the performance shown by the MHD numerical analysis is considerably lower than the designed one. For such a case, the performance can be improved by operating the MHD generator under an applied magnetic flux density larger and an inlet ionization degree lower than those designed values.
机译:提出了一种确定高性能冷冻惰性气体等离子体(FIP)MHD发生器的基本规格的数值设计方法。 为了验证所提出的方法,对具有由所提出的方法设计的不同热输入(30,100,300或1000mW)的多个FIP MHD发生器执行二维(R-Z)MHD数值分析。 数值结果表明,具有100mW或更大的热输入的设计的FIP MHD发生器能够以大约与所设计的相同的性能操作。 对于设计的MHD发电机,具有30mW的热输入; 然而,MHD数值分析所示的性能远低于设计的性能。 对于这种情况,可以通过在施加的磁通密度下操作MHD发生器来提高性能,并且入口电离程度低于设计值。

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