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Three Dimensional DSMC-PIC Simulations of Ion Thruster Plumes with SUGAR

机译:糖对离子推进器羽流的三维DSMC-PIC模拟

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Ion thruster plumes are simulated under a framework that has been recently developed called SUGAR (Scalable Unstructured Gas dynamics with Adaptive mesh Refinement). SUGAR is used to model the momentum exchange (MEX) and charge exchange (CEX) collisions occurring between the neutral and ion species as well as the induced electric field effect due to ions. Multiple AMR meshes are used in order to capture different physical phenomena present in the flow. Streamlines for the flow show that there is a backflow induced due to the combined effect of MEX/CEX collisions and electric field effects. A multiple thruster configuration is also examined to extend the studies to cases where there is no axial or radial symmetry present and therefore can only be modeled with a three dimensional simulation capability. The combined plume structure shows interactions between individual thrusters which the AMR capability captures in an automated manner. Finally, a backflow analysis was done to quantify the conditions present upstream of the thruster.
机译:离子推进器羽流是在最近开发的称为SUGAR(具有自适应网格细化的可伸缩非结构化气体动力学)的框架下进行模拟的。糖用于建模中性和离子种类之间发生的动量交换(MEX)和电荷交换(CEX)碰撞,以及由于离子引起的感应电场效应。为了捕获流中存在的不同物理现象,使用了多个AMR网格。流动的流线表明,由于MEX / CEX碰撞和电场效应的共同作用,引起了回流。还检查了多推力器配置,以将研究扩展到不存在轴向或径向对称性的情况,因此只能使用三维仿真功能进行建模。组合羽状结构显示了AMR功能以自动方式捕获的各个推进器之间的相互作用。最后,进行了回流分析以量化推进器上游的状况。

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