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PARAMETRIC TOOL FOR THE THERMAL ANLYSIS OF A SATELLITE

机译:用于卫星的热分析的参数工具

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The work here summarized presents the development of a new tool for the thermal analysis of small satellites, whose main feature is the strong geometrical and thermal parametrization. The work has been conceived within the 3STAR Project of the ASSET Research Group of the Politecnico di Torino. The 3STAR Project is part of an initiative of the ESA Education Office named GEOID. The objective of the project is the development of an international space mission by european universities which will be made up by a con- stellation of cubesat in a Low Earth Orbit (LEO) orbit, which main goal will be the validation of the Global Educational Network for Satellite Op- erations (GENSO), which is a ground stations network. The strong link with this students' project led to the idea of developing a tool characterized by low complexity and costs, able to give preliminary results on the thermal behavior of the system when the final configuration is not finalized, allowing to perform a sensibility analysis with respect to some geometrical parameters such as the electronic boards and heat sources positioning. The tool is made up by a MatLab code whose functions are reading the geometry and mesh, perform the thermal analysis on the basis of the internal and external heat fluxes set by the user and provide an output file. Because of the low cost requirement, the software has been conceived to interface with open software. In particular, concerning the mesh, the code reads the mesh output format of Gmsh, an open software that allows to create 3D geometries and to mesh them. Concerning the output, the code is able to write an output file compatible with ParaView, an open-source data analysis and visualisation tool. The result is a tool that is useful not only during the design verification phase, but also during the preliminary design phase, allowing to study the effects on the thermal behavior of the system due to the geometry variation. The code has been applied to the 3STAR case study, and validated with AnSys software for what concerns the heat conduction calculation.
机译:这里的工作总结了介绍了小型卫星热分析的新工具的开发,其主要特征是强大的几何和热参数化。该工作已在PoliteCnico di Toino的资产研究小组的3星级项目中设想。 3Star项目是ESA教育办公室的倡议的一部分,名为Geoid。该项目的目标是由欧洲大学的国际空间特派团制定,该大学将在低地球轨道(Leo)轨道中的立方体的平整,主要目标是全球教育网络的验证对于卫星运营(Genso),这是一个地站网络。与此学生项目的强烈联系导致开发一种以低复杂性和成本为特征的工具的想法,能够在最终配置未完成时对系统的热行为进行初步结果,从而允许进行敏感性分析尊重一些几何参数,例如电子板和热源定位。该工具由MATLAB代码组成,MATLAB代码读取几何和网格,基于用户设置的内部和外部热通量执行热分析并提供输出文件。由于成本低成本,软件已被设想为与开放软件接口。特别是关于网格,代码读取GMSH的网格输出格式,该开放软件允许创建3D几何和网格。关于输出,代码能够写入与段常规的输出文件,开源数据分析和可视化工具。结果是不仅在设计验证阶段期间有用的工具,而且在初步设计阶段期间,允许由于几何变化而研究对系统的热行为的影响。代码已应用于3Star案例研究,并验证了ANSYS软件,涉及导热计算的疑虑。

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