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Dynamic Control of Radiative Surface Properties With Origami-Inspired Design

机译:基于折纸设计的辐射表面特性的动态控制

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Thermal management systems for space equipment commonly use static solutions that do not adapt to environmental changes. Dynamic control of radiative surface properties is one way to respond to environmental changes and to increase the capabilities of spacecraft thermal management systems. This paper documents an investigation of the extent to which origami-inspired surfaces may be used to control the apparent absorptivity of a reflective material. Models relating the apparent absorptivity of a radiation shield to time-dependent surface temperatures are presented. Results show that the apparent absorptivity increases with increasing fold density and indicate that origami-inspired designs may be used to control the apparent radiative properties of surfaces in thermal management systems.
机译:太空设备的热管理系统通常使用不适应环境变化的静态解决方案。动态控制辐射表面特性是响应环境变化并增强航天器热管理系统功能的一种方法。本文研究了折纸启发的表面可用于控制反射材料的表观吸收率的程度。提出了将辐射屏蔽的表观吸收率与时间相关的表面温度相关的模型。结果表明,表观吸收率随折叠密度的增加而增加,并表明折纸启发的设计可用于控制热管理系统中表面的表观辐射特性。

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