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Performance analysis of a self-driven adaptive cold-plate, an experimental approach

机译:自驱动自适应冷板的性能分析,一种实验方法

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Effective thermal management system is critical for the safety, maintainability and reliability of the operation of space vehicles. The objective of the present study is to improve the current space-based active fluid loop (AFL). A self-driven adaptive cold-plate (SDACP) was proposed in this paper. The innovation relies on a novel energy-saving wax-actuated thermal switch assembly (TSA) which is highly integrated and competent in fulfilling multiple missions including temperature sensing, mechanical manipulation and flow regulation, decreasing the required power input in temperature control process and thus enhancing the overall operating economy. Ground-based validation experiments were organized to evaluate its temperature control precisions. Comparative studies were conducted at the same time to investigate the influence of the physical properties of actuators using different waxes on the thermal control performances.
机译:有效的热管理系统对于航天器运行的安全性,可维护性和可靠性至关重要。本研究的目的是改善当前的基于空间的主动流体回路(AFL)。本文提出了一种自驱动的自适应冷板(SDACP)。这项创新依靠一种新颖的节能蜡致动热敏开关组件(TSA),该组件高度集成,能够胜任包括温度传感,机械操纵和流量调节在内的多项任务,从而减少了温度控制过程中所需的功率输入,从而提高了效率。整体运营经济。组织了基于地面的验证实验,以评估其温度控制精度。同时进行了比较研究,以研究使用不同蜡的执行机构的物理性能对热控制性能的影响。

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