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Experiments on MHD Generators with Nonequilibrium Ionization Using Potassium-Seeded Argon Plasmas

机译:钾离子注入氩等离子体非平衡电离的MHD发生器的实验

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The results of a series of experiments aimed at the realization of nonequilibrium ionization in generators using magnetically induced ionization are described. The experiments were performed with two Faraday-type MHD generators, using potassium-seeded argon plasma in the temperature range of 1, 600° to 2, 000°K at about 1 atm.In the first experiment, the mechanical and the thermal performances of the generator channel and also its electrical characteristics were observed in quasi-equilibrium state, the results of which indicated satisfactory operation.In the second experiment, the electrical characteristics of the generator with an improved configuration were measured. The experimental results were explained with use made of the four-terminal network theory which involves the nonequilibrium ionization and instability effects, and the experimental results agreed well with theory. Despite the small experimental scale, an increase in power output by magnetically induced ionization was successfully achieved with good reproducibility, when preionization was suitably applied.
机译:描述了一系列旨在实现使用磁感应电离器的发电机中非平衡电离的实验结果。实验是使用两台法拉第(Faraday)型MHD发生器进行的,在大约1个大气压,温度范围为1,600°至2,000°K的情况下,使用钾离子注入的氩等离子体进行实验。在准平衡状态下观察到发电机通道及其电学特性,其结果表明运行令人满意。在第二个实验中,测量了具有改进构造的发电机的电学特性。利用四端网络理论对实验结果进行了解释,该理论涉及非平衡电离和不稳定性效应,实验结果与理论相吻合。尽管实验规模很小,但当适当应用预电离时,可以成功实现磁感应电离输出功率的增加,并具有良好的可重复性。

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