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Detailed modeling and analysis of spacecraft plume/ionosphere interactions in low Earth orbit

机译:低地球轨道中航天器羽流/电离层相互作用的详细建模和分析

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摘要

Detailed direct simulation Monte Carlo/particle‐in‐cell simulations involving the interaction of spacecraft thruster plumes with the rarefied ambient ionosphere are presented for steady thruster firings in low Earth orbit (LEO). A nominal mass flow rate is used to prescribe the rocket exit conditions of a neutral propellant species for use in the simulations. The charge exchange interactions of the steady plume with the rarefied ionosphere are modeled using a direct simulation Monte Carlo/particle‐in‐cell methodology, allowing for a detailed assessment of nonequilibrium collisional and plasma‐related phenomena relevant for these conditions. Results are presented for both ram‐ and wake‐flow configurations, in which the thrusters are firing into (ram) or in the direction of (wake) the free stream ionosphere flow in LEO. The influence of the Earth's magnetic field on the development of the ion plume is also examined for three different field strengths: two limiting cases in which B →0 and B → ∞ , and the LEO case in which B =0.5 Gs. The magnetic field is found to have a substantial impact on the resulting neutral and ion plumes, and the gyroscopic motion of the magnetized ions results in a broadening of the ion energy distribution functions. The magnetic field model also incorporates a cross‐field diffusion mechanism which is shown to increase the current density sampled far from the thruster. Key Points Particle‐based model for plume/ionosphere interactions Charge‐exchange reactions modeled using detailed DCS/TCS data B ‐field has a strong influence on the development of plumes
机译:针对低地球轨道(LEO)中的稳定推进器点火,提出了详细的直接仿真,其中涉及航天器推进器羽流与稀有环境电离层相互作用的蒙特卡洛/单元内仿真。标称质量流率用于规定中性推进剂物质在模拟中的火箭退出条件。稳定羽流与稀薄电离层之间的电荷交换相互作用是使用直接模拟蒙特卡洛/粒子内方法进行建模的,从而可以详细评估与这些条件相关的非平衡碰撞和与等离子体相关的现象。给出了推流和尾流配置的结果,其中推力器向LEO中的自由流电离层流喷射(冲压)或朝(尾流)方向发射。还针对三种不同的场强检查了地球磁场对离子羽流发育的影响:两种极限情况,即B→0和B→∞,以及LEO情况,B = 0.5 Gs。发现磁场对所得的中性和离子羽流有重大影响,并且磁化离子的陀螺运动导致离子能量分布函数变宽。磁场模型还结合了跨场扩散机制,该机制可增加远离推进器采样的电流密度。关键点用于羽流/电离层相互作用的基于粒子的模型使用详细的DCS / TCS数据建模的电荷交换反应B场对羽流的发展有很大影响

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    Stephani K. A.; Boyd I. D.;

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