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Low Earth orbit durability evaluation of protected silicone for advanced refractive photovoltaic concentrator arrays

机译:用于高级折射光伏聚光器阵列的受保护有机硅的低地球轨道耐久性评估

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摘要

The need for efficient, cost effective sources of electrical power in space has led to the development of photovoltaic power systems which make use of novel refractive solar concentrators. These concentrators have been conceived in both point-focus and linear-focus designs. Current concentrator lenses are fabricated from flexible silicones with Fresnel facets along their inside surface. To insure the efficient operation of these power systems, the concentrator lenses must be durable and the silicone material must remain specularly transmitting over a reasonable lifetime in low Earth orbit (LEO) and other space environments. Because of the vulnerability of silicones to atomic oxygen and ultraviolet radiation in LEO these lenses have been coated with a multi-layer metal oxide protective coating. The objective of this research was to evaluate the LEO durability of the multilayer coated silicone for advanced refractive photovoltaic concentrator arrays with respect to optical properties and microstructure. Flat metal oxide coated silicone samples were exposed to ground-laboratory and in-space atomic oxyqen for durability evaluation.
机译:对空间中高效,成本有效的电源的需求导致了利用新型折射式太阳能聚光器的光伏发电系统的发展。这些集中器已经在点聚焦和线性聚焦设计中得到了构想。当前的聚光镜是由柔性有机硅制成的,其内表面具有菲涅耳小平面。为了确保这些电源系统的高效运行,聚光镜必须耐用,并且有机硅材料必须在低地球轨道(LEO)和其他太空环境中的合理使用寿命内保持镜面透射。由于有机硅易受LEO中原子氧和紫外线辐射的影响,这些镜片已涂有多层金属氧化物保护涂层。这项研究的目的是就光学性能和微观结构评估用于高级折射光伏聚光器阵列的多层有机硅涂层的LEO耐久性。将涂有扁平金属氧化物的有机硅样品暴露于地面实验室和空间原子氧中进行耐久性评估。

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