轨道飞行条件下使用环形热管的纳米卫星热控制系统仿真

Yu Wang, O. Denisov, L. Denisova
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引用次数: 0

摘要

纳米卫星开发的关键问题之一是为机载计算机的运行提供给定的温度范围。不断增加的信息负载导致需要使用更先进的具有高热设计功率(TDP)的处理器。处理器的指示热状态可以使用远程散热系统(微型环路热管)来实现。以一个纳米卫星模型为例,设计了一个具有微型环形热管的热控制系统。该模拟是在西门子NX计划中在地球的椭圆轨道和地球静止轨道上进行的。考虑了使用单回路和双回路热管的热功率为15W的处理器的冷却方案。计算表明,使用环路热管可以将处理器温度降低到可接受的值。纳米卫星外壳的复合材料的增强平面中导热系数的各向异性会对处理器的温度产生显著影响。这为使用各向异性复合材料来确保纳米卫星的热状态开辟了前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of the thermal control system of nanosatellite using the loop heat pipes under the orbital flight conditions
One of the key problems in the development of nanosatellites is to provide a given temperature range for the operation of the on-board computer. The constantly increasing information load leads to the need to use more advanced processors with high thermal design power (TDP). The indicated thermal regime of processors can be achieved using remote heat removal systems - miniature loop heat pipes. Using a model of nanosatellite as an example, a thermal control system with miniature loop heat pipes is designed. The simulation was carried out in the Siemens NX program in the elliptical and geostationary orbits of the Earth. The cooling schemes of the processor with a thermal power of 15 W using one and two loop heat pipes are considered. Calculations showed that the use of loop heat pipes can reduce the processor temperature to acceptable values. The anisotropy of the thermal conductivity coefficient in the reinforcement plane of the composite material of the nanosatellite case can have a significant effect on the temperature of the processor. This opens up prospects for the use of anisotropic composite materials to ensure the thermal regime of the nanosatellite.
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