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Construction strategy and performance analysis of large-scale spherical solar concentrator for the space solar power station

机译:太阳能发电站大型球形太阳能集中器的建设策略与性能分析

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摘要

The space solar power station is a gigantic power satellite to provide the earth with continuous energy. The front-end system of space solar power station, solar concentrator, has significant influences on the optical performance. Regarding the proposed orb-shaped membrane energy gathering array scheme, this paper deals with the construction strategy of its large-scale spherical concentrator to reduce the complexity of manufacturing and improve the optical properties. The optical principle of the spherical concentrator is described and the spatial motion characteristic is presented. A novel construction strategy for the large-scale concentrator is proposed via partitioning octahedron on the sphere and polygonal partition. This paper evaluates the optical performance of the concentrator constructed by the novel strategy using ray tracing method. Performance parameters such as optical concentration ratio and collection efficiency are obtained. Comparison with the other strategies are also implemented. In addition, influence factors such as the sun's non-parallelism, the tracking precision, the orbital periodic motion, and the potential blockage effects of microwave transmitting antenna and supporting structure are mathematically discussed and evaluated. The numerical results indicate that the proposed strategy achieves a high collection rate, a small efficiency fluctuation, appropriate energy distribution, and relatively small splicing modules, which is conducive to improve optical performance and decrease difficulty in manufacturing.
机译:太阳能发电站是一种巨大的功率卫星,可以通过连续能量提供地球。太阳能电力站,太阳能集中器的前端系统对光学性能具有重大影响。关于所提出的ORB形膜能量聚集阵列方案,本文涉及其大型球形集中器的结构策略,以降低制造的复杂性,改善光学性质。描述了球形浓缩器的光学原理,并提出了空间运动特性。通过在球体和多边形分区上划分八面体划分八面体的大规模集中器的新建筑策略。本文使用光线跟踪方法评估了新型策略构建的浓缩器的光学性能。获得诸如光学浓度比和收集效率的性能参数。还实施了与其他策略的比较。此外,在数学上讨论和评估了影响微波发送天线和支撑结构的诸如Sun的无平行性,跟踪精度,轨道周期性运动和潜在堵塞效果的影响因素。数值结果表明,该策略达到了高收集率,小效率波动,适当的能量分布和相对较小的拼接模块,这有利于改善光学性能并降低制造中的难度。

著录项

  • 来源
    《Solar Energy》 |2020年第9期|133-143|共11页
  • 作者单位

    Northwest Univ Sch Chem Engn 229 North Taibai Rd Xian 710069 Peoples R China;

    Xidian Univ Shaanxi Key Lab Space Solar Power Stn Syst Xian 710071 Peoples R China;

    Xidian Univ Shaanxi Key Lab Space Solar Power Stn Syst Xian 710071 Peoples R China;

    China Acad Space Technol Qian Xuesen Lab Space Technol Beijing 100094 Peoples R China;

    Northwest Univ Sch Chem Engn 229 North Taibai Rd Xian 710069 Peoples R China;

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

    Space solar power station; The OMEGA scheme; Construction strategy; Optical property; Influence factor;

    机译:太空太阳能电站;欧米茄方案;施工策略;光学性质;影响因素;

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