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卫星内部真空度预判模拟仿真研究

Satellite Internal Vacuum Prediction Simulation Research

  • 摘要: 真空度对卫星高功率产品的安全、在轨寿命至关重要。卫星入轨后空间环境温度变化剧烈,用等温释气公式推导卫星内部真空度误差较大。文章基于材料脱附吸附随温度变化特征,解算卫星材料变温工况下放气量,提出一种卫星内部真空度仿真计算方法。对温度波动条件下星内材料释气进行仿真分析,得到了卫星通信舱在温度变化状态下内部真空度随时间变化情况仿真结果。模拟结果与实际测量结果进行对比,两者差异小于34%。文章为卫星在轨及地面真空试验期间其内部压力值的预估提供理论依据。

     

    Abstract: vacuum critical to the safety of satellite high -power products and the life span of the track. After the satellite enters orbit, the temperature of the space environment changes dramatically and there is a significant error in deriving the vacuum degree inside the satellite using the isothermal release formula. Based on the characteristics of the material's adsorption with the characteristics of temperature changes, calculate the amount of gas released from satellite materials under variable temperature conditions, and proposes a satellite internal vacuum simulation calculation method. The simulation analysis of the interpretation of the internal materials of the temperature fluctuation environment has been performed, and the satellite communications cabin simulation results are changed over time under temperature mutation state. Compared with the actual measurement result, the simulation result error is less than 34%. This article provides theoretical basis for the estimation of satellites in the rail and ground vacuum experiment.

     

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