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Space-Enhanced Terrestrial Solar Power for Equatorial Regions

机译:赤道区域的空间增强型陆地太阳能

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摘要

This Paper investigates the concept of solar mirrors in an Earth orbit to provide large-scale terrestrial equatorial solar farms with additional solar power during the hours of darkness. A flower constellation of mirrors is considered in highly eccentric orbits (semimajor axis=20,270.4 km) in order to increase the time of visibility over the solar farms, and through this architecture, only two mirrors are needed to provide complete night coverage over three equatorial locations. Selecting the proper value for the orbit eccentricity, solar radiation pressure and Earth's oblateness perturbations act on the mirrors so that the apsidal motion of the orbit due to these perturbations is synchronized with the apparent motion of the sun. Therefore, it can be guaranteed that the perigee always points toward the sun and that the mirrors orbit mostly above the night side of the Earth. With respect to geostationary orbit, the family of orbits considered in this Paper allows a passive means to overcome issues related to orbital perturbations. Moreover, because of the large slant range from geostationary orbits, a larger mirror is required to deliver the same energy that could be delivered from a lower orbit with a smaller mirror. As a result, a single antiheliotropic flower constellation composed of two mirrors of 50 km2 would be able to deliver energy in the range of 4.60-5.20 GW center dot h per day to 1000 km3 solar farms on the equator. Finally, it is estimated that, deploying 90 of these constellations, the price of electricity could be reduced from 9.1 cents to 6 cents per kWh.
机译:本文研究了地球轨道上的太阳镜的概念,以在黑暗时段为大型陆地赤道太阳能农场提供额外的太阳能。为了增加太阳能发电场的能见度,在高度偏心的轨道(半长轴= 20,270.4 km)中考虑了一个镜面花星座,通过这种架构,只需两个镜面即可在三个赤道位置提供完整的夜间覆盖。为轨道偏心率选择适当的值,太阳辐射压力和地球扁率摄动会作用在镜子上,从而使由于这些摄动而引起的轨道的跳动与太阳的视在运动同步。因此,可以保证近地点始终指向太阳,并且镜子在地球的夜侧上方居多。关于对地静止轨道,本文考虑的轨道族提供了一种被动手段来克服与轨道扰动有关的问题。此外,由于地球静止轨道的倾斜范围较大,因此需要较大的反射镜以传递与较小的反射镜从较低轨道传递的能量相同的能量。结果,由两个50 km2的反射镜组成的单个抗亲热花星座将能够每天将能量在4.60-5.20 GW中心点h范围内的能量传递到赤道上的1000 km3太阳能农场。最后,据估计,如果部署这些星座中的90个,则电价可以从每千瓦时9.1美分降低到6美分。

著录项

  • 来源
    《Journal of Spacecraft and Rockets》 |2019年第1期|33-43|共11页
  • 作者

    Bonetti F.; McInnes C.;

  • 作者单位

    Univ Glasgow, Dept Syst Power & Energy, Sch Engn, Glasgow G12 8QQ, Lanark, Scotland;

    Univ Glasgow, Dept Syst Power & Energy, Sch Engn, Engn Sci, Glasgow G12 8QQ, Lanark, Scotland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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