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DESIGN, DEVELOPMENT AND TESTING OF AN ~(241)AM-FUELLED RHU FOR THE ESA PROGRAM

机译:ESA计划〜(241)AM燃料式RHU的设计,开发和测试

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Radioisotope heater units (RHUs) are fundamental to keep the internal spacecraft temperatures within the required operational and survival limits, especially in regions where the availability of solar power is limited. A new RHU architecture has been developed for the European Space Agency (ESA) radioisotope power system (RPS) programme and ~(241)Am has been selected as radioisotope heat source. The design implements a multilayer containment approach. Re-entry performance studies have confirmed the compliance with safety requirements, while thermal and structural modelling and testing have proved the feasibility of the design. This paper presents the architecture and some of the experimental results correlated with the output of the theoretical models.
机译:放射性同位素加热器单元(RHU)对于将内部航天器温度保持在所需的操作和生存限制内至关重要,特别是在太阳能可用性有限的地区。已经为欧洲航天局(ESA)放射性同位素动力系统(RPS)计划开发了一种新的RHU架构,并且已选择〜(241)Am作为放射性同位素热源。该设计实现了多层遏制方法。再入性能研究已确认符合安全要求,而热和结构建模与测试则证明了设计的可行性。本文介绍了该体系结构,并将一些实验结果与理论模型的输出相关联。

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