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Numerical and Experimental Analysis of Solar Intrusion for Radiometer in Geostationary Orbit

机译:对地静止轨道辐射计太阳辐射的数值与实验分析

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In this study, a finite-difference model of a radiometer was established to perform heat transfer analysis. To start with, the computational methodology was introduced along with suitable assumptions. The temperature distribution was calculated based on the advanced finite-difference method with a control volume approach, which can deal with the radiation boundary conditions efficiently. The Oppenheim method was used to calculate the radiation heat transfer inside the radiometer, and the calculation of radiation view factor of the boundary surface was based on the hemicube method. The heat flux calculation was performed based on the Gebhardt method for nonspecular elements and the ray-tracing method for specular elements. The effect of the midnight solar intrusion on the temperature of the second mirror assembly was investigated. Several full disk frame cases and CEI initialization cases were analyzed to determine if the secondary mirror assembly temperatures exceed the mission allowable temperature. The thermal test of the secondary mirror assembly was used to validate the reliability of the thermal model. The results show that the maximum temperature of the secondary housing exceeds the allowable temperature, which will produce a measurable change in instrument performance.
机译:在这项研究中,建立了辐射计的有限差分模型来进行传热分析。首先,引入了计算方法以及适当的假设。温度分布是基于先进的有限差分法和控制体积法计算的,可以有效地处理辐射边界条件。用Oppenheim方法计算辐射计内部的辐射传热,边界面的辐射视因子的计算是基于半立方体法。基于非镜面元素的Gebhardt方法和镜面元素的射线追踪方法进行热通量计算。研究了午夜太阳入侵对第二个反射镜组件温度的影响。分析了几个全磁盘框架情况和CEI初始化情况,以确定辅助镜组件温度是否超过任务允许温度。辅助镜组件的热测试用于验证热模型的可靠性。结果表明,辅助外壳的最高温度超过了允许的温度,这将在仪器性能方面产生可测量的变化。

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