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Simulating Coupled Thermal-Mechanical Interactions in Morphing Radiators

机译:模拟变形散热器中的热机械相互作用

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Thermal control is an important aspect of every spacecraft. The thermal control system (TCS) must maintain the temperature of all other systems within acceptable limits in spite of changes in environmental conditions or heat loads. Most thermal control systems used in crewed vehicles use a two-fluid-loop architecture in order to achieve the flexibility demanded by the mission. The two-loop architecture provides sufficient performance, but it does so at the cost of additional mass. A recently-proposed radiator concept known as a morphing radiator employs shape memory alloys in order to achieve the performance necessary to use a single-loop TCS architecture. However, modeling the behavior of morphing radiators is challenging due to the presence of a unique and complex thermomechanical coupling. In this work, a partitioned analysis procedure is implemented with existing finite element solvers in order to explore the behavior of a possible shape memory alloy-based morphing radiator in a mission-like thermal environment. The results help confirm the theory of operation and demonstrate the ability of this method to support the design and development of future morphing radiators.
机译:热控制是每个航天器的一个重要方面。尽管环境条件或热负荷变化,热控制系统(TCS)必须在可接受的限度内保持所有其他系统的温度。船员车辆中使用的大多数热控制系统使用双流量回路架构,以实现特派团所需的灵活性。双环架构提供足够的性能,但它以额外的质量为代价。最近提出的散热器概念被称为变形散热器采用形状记忆合金,以实现使用单环TCS架构所需的性能。然而,由于存在独特和复杂的热机械耦合,建模变形散热器的行为是挑战性的。在这项工作中,用现有的有限元求解器实现分区分析程序,以便在特定的热环境中探讨可能的形状记忆合金的变形式的变形传感器的行为。结果有助于确认操作理论,并展示这种方法支持未来变形散热器的设计和开发的能力。

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