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Heat capacity estimation of the thermal buffer mass for temperature control of satellite electronic components in periodic operation

机译:定期运行中用于卫星电子组件温度控制的热缓冲块的热容量估算

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In the present study, the analytical method to design the thermal buffer mass (TBM) used to control the temperatures of satellite electronic components that operate periodically is investigated. In the energy equation of the system composed of component and thermal control modules, the radiation heat-discharge term, which is a biquadratic equation of temperatures, is linearized, and approximate analytical solutions that guarantee minimum errors under physically valid conditions are obtained. An equation between the dimensionless thermal capacity of TBM and radiator area is derived for arbitrary design input data from the approximate solution. These two parameters are related almost linearly in the examined range of this study. Stable periodicity of temperatures is insured when thermal balance is maintained between the net thermal energy accumulated in the system during heating period and the net thermal energy discharge to space during cooling-off period. From the thermal balance, restrictive conditions for the thermal capacity of the TBM and the area of radiators are drawn. If the thermal capacity of the TBM increases, resulting difference in temperature profiles during heating phase will be very small. However, cooling rate during the component off-duty phase will be slow down, and this will reduce the duty cycle of the compensation heater. Finally, the analytic equation for mass optimization is presented to minimize the system mass.
机译:在本研究中,研究了设计用于控制周期性工作的卫星电子组件温度的热缓冲质量(TBM)的分析方法。在由组件和热控制模块组成的系统的能量方程式中,将辐射的散热项(温度的二次方程式)线性化,并获得了可保证在物理有效条件下保证最小误差的近似解析解。对于近似设计中的任意设计输入数据,得出了TBM的无因次热容量与散热器面积之间的方程。在本研究的研究范围内,这两个参数几乎线性相关。当在加热期间系统中积累的净热能与冷却期间排放到空间的净热能之间保持热平衡时,可以确保温度的周期性稳定。从热平衡中,得出了TBM热容量和散热器面积的限制条件。如果TBM的热容量增加,则加热阶段温度分布的差异将非常小。但是,在组件停止工作阶段的冷却速度将变慢,这将减少补偿加热器的占空比。最后,提出了用于质量优化的解析方程,以最小化系统质量。

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