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MICROSCOPIC APPROACH TO ANALYZE SOLAR-SAIL SPACE-ENVIRONMENT EFFECTS

机译:分析太阳帆空间环境影响的微观方法

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Near-sun space-environment effects on metallic thin films solar sails as well as hollow-body sails with inflation fill gas are considered. Analysis of interaction of the solar radiation with the solar sail materials is presented. This analysis evaluates worst-case solar radiation effects during solar-radiation-pressure acceleration. The dependence of the thickness of solar sail on temperature and on wavelength of the electromagnetic spectrum of solar radiation is investigated. Physical processes of the interaction of photons, electrons, protons and a-particles with sail material atoms and nuclei, and inflation fill gas molecules are analyzed. Calculations utilized conservative assumptions with the highest values for the available cross sections for interactions of solar photons, electrons and protons with atoms, nuclei and hydrogen molecules. It is shown that for high-energy photons, electrons and protons the beryllium sail is mostly transparent. Sail material will be partially ionized by solar UV and low-energy solar electrons. For a hollow-body photon sail effects including hydrogen diffusion through the solar sail walls, and electrostatic pressure is considered. Electrostatic pressure caused by the electrically charged sail's electric field may require mitigation since sail material tensile strength decreases with elevated temperature.
机译:考虑了对金属薄膜太阳能帆以及带充气填充气体的空心风帆的近日空间环境影响。介绍了太阳帆辐射与太阳帆材料相互作用的分析。该分析在太阳能辐射压力加速期间评估了最坏情况的太阳辐射效应。研究了太阳能帆厚度在太阳辐射电磁谱的温度和波长上的依赖性。分析了光子,电子,质子和颗粒与帆物质原子和核的相互作用的物理过程,以及充气填充气体分子。计算利用保守假设具有最高值的可用横截面,用于具有原子,核和氢分子的太阳能光子,电子和质子的相互作用。结果表明,对于高能量的光子,电子和质子,铍帆大部分是透明的。帆船将通过太阳能UV和低能量太阳能部分部分地电离。对于空心的光子帆效果,包括通过太阳帆船的氢气扩散,并且考虑静电压力。由电荷帆的电场引起的静电压力可能需要减轻,因为帆船抗拉强度随着温度升高而降低。

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