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Simulations of Ion Thruster Plume–Spacecraft Interactions on Parallel Supercomputer

机译:并行超级计算机上离子推进器羽流与航天器相互作用的仿真

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摘要

A parallel three-dimensional electrostatic Particle-In-Cell (PIC) code is developed for large-scale simulations of ion thruster plume–spacecraft interactions on parallel supercomputers. This code is based on a newly developed immersed finite-element (IFE) PIC. The IFE-PIC is designed to handle complex boundary conditions accurately while maintaining the computational speed of the standard PIC code. Domain decomposition is used in both field solve and particle push to divide the computation among processors. A high-resolution simulation of multiple ion thruster plume interactions for a realistic spacecraft using a domain enclosing the entire solar array panel is carried out to demonstrate the capability of the code. A standard finite-difference PIC (FD-PIC) code is also parallelized for comparison. Both the IFE-PIC and FD-PIC run with similar overall speed, and the IFE-PIC achieves a high parallel efficiency of$geq$90%.
机译:开发了并行三维静电粒子内(PIC)代码,用于在并行超级计算机上大规模模拟离子推进器羽流与航天器之间的相互作用。该代码基于新开发的浸入式有限元(IFE)PIC。 IFE-PIC旨在精确处理复杂的边界条件,同时保持标准PIC代码的计算速度。领域分解既用于现场求解,又用于粒子推送,以将计算结果划分到各个处理器之间。使用封闭整个太阳能电池板的区域,对一个现实的航天器进行了多个离子推进器羽流相互作用的高分辨率仿真,以证明该代码的功能。还对标准的有限差分PIC(FD-PIC)代码进行并行化以进行比较。 IFE-PIC和FD-PIC都以相似的整体速度运行,并且IFE-PIC达到了90%的高并行效率。

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