对Alsat-1卫星电池组分组件进入蜂窝板进行热分析

A. Boudjemai, R. Hocine, M. Sweeting
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引用次数: 1

摘要

关于电池问题的信息对指导研究改进电池技术是有用的。严重或反复出现的问题是需要集中精力的明显问题。观察到的问题可能由多个现象引起。然而,在Alsat-1电池模块上观察到的问题是,一些电池损坏了,损坏是由极端温度造成的,可以解释这个问题是两个不同的插入(简单插入和硬插入)非常接近,导致热通量增加。蜂窝板中用于支撑电池的嵌件对太阳能板到电池组的传导有严重影响,因此太阳能板离电池更近的温度决定了其温度。因此,为此进行了模拟,以仔细观察由周围插入件的热耦合引起的这一现象,并从所获得的结果中得到重要反馈,以避免将来在阿尔及利亚卫星(如Alsat-1B)上进行所有危险的设计。热模拟结果表明,相邻刀片会产生热干扰,且相邻刀片对高温的影响非常敏感。本文得到的不同结果对航天器的初步设计阶段有很大的帮助,在卫星电力分系统的设计中具有很好的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal analysis of the Alsat-1 satellite battery pack sub assembly into the honeycomb panel
Information on battery problems can be useful in guiding research to improve battery technology. Problems that are serious or reoccur are the obvious ones to concentrate on. Observed problems can be caused by more than one phenomenon. However the problem that was observed on the Alsat-1 battery module where some cells were damaged, and the damage was caused by the extreme temperatures, an explanation can be brought to this problem is that the two different inserts (simple insert and hard insert) are very close which caused an increase in heat flux. The inserts used to support the battery in the honeycomb panel have a serious impact on the conduction from the solar panel to the battery pack, and so the temperature of the solar panel closer to the battery determines its temperature. Thus for this reason the simulation was performed to see carefully this phenomenon caused by the thermal coupling of the surrounding inserts and the important feedback from the results obtained in order to avoid all risky design in the future on the Algerian satellites such as Alsat-1B. Thermal simulations showed that the adjacent inserts cause thermal interference and the adjacent inserts are highly sensitive to the effect of high temperatures. The different results obtained in this paper are very helpful in the preliminary design stage of the spacecraft and which is a very promising application in the design of satellite electrical power subsystem.
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