磁场分布对法拉第MHD加速器推力性能的影响

Y. Liao, Guiping Zhu, Lai Li
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摘要

本文对理想的法拉第MHD加速器在磁场组态下的推力增强效应进行了三维数值模拟。采用均匀磁场和非均匀磁场作用下的低磁雷诺数磁流体动力学模型进行了研究。随着外加电势的增大,两种磁场作用下的沟道推力增大,电效率降低。当外加电势固定时,非均匀磁场作用下的推力比均匀磁场作用下的推力大。在较大的电导率或磁场强度下,这种偏差变得更加明显。然而,电势的增加对推力差的影响可以忽略不计。当磁场为1.5 T,电势为600 V时,均匀磁场下的沟道推力为883.9 N,增大率为47.6%。当Z方向最大磁场强度为1.5 T,电势为600 V时,非均匀磁场作用下的沟道推力为885.37 N,增大率为47.9%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effect of Magnetic Field Distribution on Thrust Performance of the Farady MHD Accelerator
In this work, a three-dimensional numerical simulation is carried out on an ideal Faraday MHD accelerator for the thrust boosting effect in terms of the configuration of magnetic field. The study is performed by using a low magnetic Reynolds number magnetohydrodynamic model under the effect of a uniform magnetic field and a non-uniform magnetic field, respectively. With the increase of the applied potential, the channel under both types of magnetic fields show an increase in thrust and a decrease in electrical efficiency. For a fixed applied potential, the thrust under the non-uniform magnetic field is higher compared with one generated by the uniform magnetic field. This deviation becomes more pronounced under a larger conductivity or magnet field strength. However, the increase in potential has negligible effect on the difference in the thrust. With the magnetic field at 1.5 T and the potential at 600 V, the channel thrust under the uniform magnetic field is 883.9 N, which makes the increase rate of 47.6%. With the maximum magnetic field strength in the Z direction at 1.5 T and the potential at 600 V, the channel thrust under the non-uniform magnetic field is 885.37 N, which makes the increase rate of 47.9%.
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