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The pressure dependence of the arc plasma propagation in simulated LEO environment

机译:模拟Leo环境中电弧等离子体传播的压力依赖性

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ESD ground tests with large-scale solar panels were conducted in simulated low-earth-orbit plasma environment. In those experiments, the propagation length and velocity were measured in an argon plasma atmosphere, of which the plasma density was approximately 1010 m−3. Additionally, the pressures were set at 4.0 × 10−2, 1.9 × 10−2 and 2.0 × 10−3 Pa. The results indicated that the plasma propagation length was greater than 3.75 m at all pressure condition in this study. The plasma propagation velocity decreased with the decrease of the backpressure. The velocity was approximately 104 m /s at 2.0 × 10−3 Pa.
机译:具有大型太阳能电池板的ESD接地测试在模拟的低地球轨道等离子体环境中进行。在这些实验中,在氩等离子体大气中测量传播长度和速度,其中等离子体密度约为10 10 -10℃ -3 / sup>。另外,压力设定为4.0×10 -2,1.9×10 -2 和2.0×10 -3 pa。结果表明在本研究中,血浆繁殖长度大于3.75μm。等离子体传播速度随着背压的降低而降低。速度约为10 4 m / s,为2.0×10 -3 pa。

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