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Data Analysis and Correlation for Thermal Balance Test on a Micro-Satellite Model

机译:微卫星模型热平衡测试的数据分析和相关性

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This article deals with the output of a thermal balance test performed on a thermal test model of a micro-satellite and a model correlation between the thermal analysis and the test observations. The test was conducted in a thermal vacuum chamber with the vacuum level higher than 10~(-5) mbar and the surrounding temperature of -85℃. Three test cases, namely, the sun-pointing solar array with part of orbit in eclipse (or Earth's shadow), the payload operation with part of orbit in eclipse, and the extreme worst hot case, were designed and conducted in such a way that the desired orbital environment could be simulated as closely as possible. The temperature data were monitored and sampled at 105 critical points distributed at different locations within the satellite body. These temperature versus time profiles and their agreements with the analytical results obtained using SINDA/G (a special software package for heat transfer analysis in space environment by Network Analysis, Inc.) are discussed. Main observations such as the large temperature gradient across the solar panel thickness and the high temperature in the radio frequency module are presented, and the underlying reasons are discussed. Model correlation for the thermal mathematical model is conducted based on the numerical analysis results and the test observations. The philosophy of model correlation is put forward. Effects of some material and interface parameters on the temperature profiles are studied. It was found that the tuned values of the surface contact conductance were quite less than the nominal values, although the temperatures of the panels are not sensitive to them.
机译:本文介绍了对微卫星热测试模型进行的热平衡测试的输出以及热分析和测试观测值之间的模型相关性。该测试在真空度高于10〜(-5)mbar,环境温度为-85℃的热真空室内进行。设计和执行了三个测试用例,分别是使日食的一部分处于轨道(或地球的阴影)的指向太阳的太阳阵列,具有日食的一部分处于轨道的有效载荷操作以及极端恶劣的热工况,使得可以尽可能地模拟所需的轨道环境。监测温度数据,并在分布在卫星体内不同位置的105个临界点进行采样。讨论了这些温度随时间变化的曲线以及它们与使用SINDA / G(由Network Analysis,Inc.在空间环境中进行传热分析的特殊软件包)获得的分析结果的一致性。介绍了主要观察结果,例如整个太阳能电池板厚度上的大温度梯度和射频模块中的高温,并讨论了其根本原因。根据数值分析结果和测试观察结果,对热数学模型进行模型关联。提出了模型相关的哲学。研究了一些材料和界面参数对温度分布的影响。已经发现,尽管面板的温度对它们不敏感,但是表面接触电导的调整值比标称值小得多。

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