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Validation of the Scale Effect for the Electrodynamic Interaction of a Magnetized Body in a Weakly-ionized Flow

机译:弱电离流中磁化体电动力相互作用的尺度效应验证

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In this study, the interaction of the magnetized axisymmetric blunt body with the hypersonic weakly-ionized flow was experimentally investigated. The magnetic interaction induces the shock layer enhancement and it is theoretically expected that the increase of the shock layer is correlated with the interaction parameter. By using a hypersonic flow generated by a expansion tube wind tunnel, we have examined the shock layer enhancement and its correlation with the interaction parameter. For this purpose, the radiating area in the shock layer was measured by a high-speed photography, and various interaction parameters were attained by altering not only the magnetic field strength but also the initial flow density and the model size. The correlation experimentally observed shows a good agreement with the numerically predicted correlation. Therefore it can be concluded that the correlation experimentally observed shows a correlation with the interaction parameter as theoretically predicted. For the comparison, the direct comparison was made using the numerical prediction of the radiating area.
机译:在这项研究中,实验研究了磁化的轴对称钝体与高超声速弱电离流的相互作用。磁相互作用引起激波层的增强,并且理论上期望激波层的增加与相互作用参数相关。通过使用由膨胀管风洞产生的高超音速流,我们研究了激波层的增强及其与相互作用参数的相关性。为此,通过高速摄影来测量冲击层中的辐射区域,并且不仅改变磁场强度,而且改变初始流量密度和模型尺寸,从而获得各种相互作用参数。实验观察到的相关性与数字预测的相关性显示出良好的一致性。因此可以得出结论,实验观察到的相关性与理论上预测的相互作用参数具有相关性。为了进行比较,使用辐射面积的数值预测进行直接比较。

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