首页> 外文会议>Sixth International Conference on Protection of Materials and Structures from Space Environment (ICPMSE-6); May 1-3, 2002; Toronto >MATHEMATICAL SIMULATION METHODS TO PREDICT CHANGES OF INTEGRAL AND SPECTRAL OPTICAL SURFACE CHARACTERISTICS OF EXTERNAL SPACECRAFT MATERIALS AND COATINGS
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MATHEMATICAL SIMULATION METHODS TO PREDICT CHANGES OF INTEGRAL AND SPECTRAL OPTICAL SURFACE CHARACTERISTICS OF EXTERNAL SPACECRAFT MATERIALS AND COATINGS

机译:预测外部空间工艺材料和涂层的积分和光谱光学表面特性变化的数学模拟方法

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摘要

The methods of statistical prediction of the change of optical properties of materials and coatings applied on spacecraft surfaces with regard to data of laboratory and in-flight experiments are presented. The prediction methods are based on mathematical simulations that describe the change of optical characteristics of spacecraft materials under the influence of environmental factors, namely, solar UV-radiation, atomic oxygen, protons and electrons of the radiation belts, solar wind and flares, affecting materials properties both separately or simultaneously. The methods of analysis of experimental data by means of structural and parametric identification of mathematical models of materials damage, the methods of predicting the changes of materials optical properties in space environment as well as results of prediction for specific spacecraft orbits are presented.
机译:结合实验室和飞行实验数据,提出了对航天器表面所用材料和涂层的光学性能变化进行统计预测的方法。该预测方法基于数​​学模拟,该数学模拟描述了航天器材料的光学特性在环境因素(即太阳紫外线辐射,原子氧,辐射带的质子和电子),太阳风和耀斑,影响材料的影响下的变化。属性可以分别或同时使用。提出了通过材料损伤数学模型的结构和参数识别来分析实验数据的方法,预测空间环境中材料光学性能变化的方法以及特定航天器轨道的预测结果。

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