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Modeling and analyses of a thermal passively stabilized LEO/GEO star tracker with embedded phase change material applying the Infused Thermal Solutions (ITS) method

  • Phase change materials offer a way of storing excess heat and releasing it when it is needed. They can be utilized as a method to control thermal behavior without the need for additional energy. This work focuses on exploring the potential of using phase change materials to passively control the thermal behavior of a star tracker by infusing it with a fitting phase change material. Based on the numerical model of the star trackers thermal behavior using ESATAN-TMS without implemented phase change material, a fitting phase change material for selected orbits is chosen and implemented in the thermal model. The altered thermal behavior of the numerical model after the implementation is analyzed for different amounts of the chosen phase change materials using an ESATAN-based subroutine developed by the FH Aachen. The PCM-modelling-subroutine is explained in the paper ICES-2021-110. The results show that an increasing amount of phase change material increasingly damps temperature oscillations. Using an integral part structure some of the mass increase can be compensated.

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Metadaten
Author:David-Sharif Kohlberger, Dominik Wild, Stefan Kasper, Markus Czupalla
Parent Title (English):ICES202: Satellite, Payload, and Instrument Thermal Control
Publisher:Texas Tech University
Place of publication:Lubbock, Tex.
Document Type:Conference Proceeding
Language:English
Year of Completion:2021
Date of first Publication:2021/07/12
Date of the Publication (Server):2024/07/19
Tag:GEO; Infused Thermal Solutions; LEO; PCM; passive thermal control; star tracker
Length:12 Seiten
Note:
50th International Conference on Environmental Systems, 12-15 July 2021, held virtually
Zugriffsart:weltweit
Institutes:FH Aachen / Fachbereich Luft- und Raumfahrttechnik
open_access (DINI-Set):open_access
collections:Verlag / Texas Tech University