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Thermal Control Schemes for a Micro-Satellite with All-Active and Selectively Active Solar String Designs

机译:具有全主动和选择性主动太阳能串设计的微型卫星的热控制方案

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In this study, a finite element model of a micro-satellite named X-SAT was developed to perform heat transfer analysis and design a passive thermal control scheme in the form of thermal coatings, film, and paints. To start with, the modeling philosophy and computational methodology were introduced along with the suitable assumptions made. A typical thermal control scheme was proposed and implemented using SINDA/G-NEVADA software. The sensitivity of the results to the software settings was then assessed. It was observed that the limits on the ray counts for Monte Carlo simulation in RENO and VEGAS routines play a vital role in deciding reliability of the results, especially the temperature gradients within solar panels. Subsequently, two types of solar panel designs, one with all-active solar strings and other with selectively active solar strings, were examined. When the panels with all-active type of solar cell strings were adopted, heat dissipation through shunt regulators posed a challenge for thermal control. Various scenarios for the second case with high-efficiency, selectively operable solar strings were also simulated. For both case studies, a sun-tracking mode and an overhead pass-imaging operation were considered for the worst hot and cold cases. The results showed that the switchable string design was preferable in terms of operational flexibility and thermal control.
机译:在这项研究中,开发了名为X-SAT的微卫星有限元模型,以进行传热分析并设计热涂层,薄膜和油漆形式的被动热控制方案。首先,介绍了建模原理和计算方法以及适当的假设。提出并使用SINDA / G-NEVADA软件实现了典型的热控制方案。然后评估结果对软件设置的敏感性。据观察,在RENO和VEGAS例程中进行蒙特卡洛模拟的射线计数限制在确定结果的可靠性,尤其是太阳能电池板内部的温度梯度方面起着至关重要的作用。随后,研究了两种类型的太阳能电池板设计,一种具有全活性太阳能串,另一种具有选择性活性太阳能串。当采用全活性类型的太阳能电池串的面板时,通过并联稳压器的散热对热控制提出了挑战。还模拟了第二种情况下具有高效,可选择性操作的太阳能串的各种情况。对于这两个案例研究,在最冷和最热的情况下都考虑了太阳跟踪模式和高架通过成像操作。结果表明,就操作灵活性和热控制而言,可切换琴弦设计更可取。

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