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Effects of the magnetic field gradient on the wall power deposition of Hall thrusters

机译:磁场梯度对霍尔推进刀壁沉积的影响

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摘要

The effect of the magnetic field gradient in the discharge channel of a Hall thruster on the ionization of the neutral gas and power deposition on the wall is studied through adopting the 2D-3V particle-in-cell (PIC) and Monte Carlo collisions (MCC) model. The research shows that by gradually increasing the magnetic field gradient while keeping the maximum magnetic intensity at the channel exit and the anode position unchanged, the ionization region moves towards the channel exit and then a second ionization region appears near the anode region. Meanwhile, power deposition on the walls decreases initially and then increases. To avoid power deposition on the walls produced by electrons and ions which are ionized in the second ionization region, the anode position is moved towards the channel exit as the magnetic field gradient is increased; when the anode position remains at the zero magnetic field position, power deposition on the walls decreases, which can effectively reduce the temperature and thermal load of the discharge channel.
机译:通过采用2D-3V粒子 - 细胞(PIC)和蒙特卡罗碰撞,研究了霍尔推进器的放电通道在霍尔推进器的放电通道上对壁的电离和壁的电力沉积的影响(MCC ) 模型。该研究表明,通过逐渐增加磁场梯度,同时保持通道出口处的最大磁强度和不变的阳极位置,电离区域朝向通道出口移动,然后在阳极区域附近出现第二电离区域。同时,墙壁上的功率沉积最初降低,然后增加。为了避免在电离在第二电离区域中的电子和离子产生的壁上的焊接电力沉积,随着磁场梯度增加,阳极位置朝向通道出口移动;当阳极位置保持在零磁场位置时,壁上的功率沉积减小,这可以有效地降低放电通道的温度和热负荷。

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