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Design and development of an optical system for obtaining fixed orientation of concentrated sunlight for indoor applications

机译:用于获得浓缩阳光固定定向的光学系统的设计与开发,用于室内应用

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摘要

A novel apparatus has been designed, simulated and fabricated to harness solar energy for indoor solar cooking and day lighting purposes. Herein, a fixed orientation collimated beam of concentrated sunlight has been achieved irrespective of the sun's position using three optical components, viz. concentrator, reflector and collimator with a dual axis tracking system. Two different designs were simulated using optical ray tracing simulations and the optical output was compared. The first design uses a paraboloidal reflector while the second design uses a Fresnel lens as concentrator. Simulation results show that the first design employing paraboloidal reflector has 52.5% optical loss just after the collimator and 52.9% loss at a 4 m distance from the collimator. Similarly, the second design has 50.6% optical loss just after the collimator and 61.8% loss at a 4 m distance from the collimator. The prototype of the Fresnel lens-based design with automatic dual axis tracking was fabricated and the system was tested from morning to evening. Stationary focal spot was observed throughout the day irrespective of the sun's position demonstrating the feasibility of the system for transporting solar energy for indoor applications. Optical loss of the prototype system was measured and was compared with the simulation results. Optical loss for the prototype just after the collimator was found to be 61.6% which is in good agreement with the simulation results. Thus, the developed novel system can be used as an alternative and clean source of energy for indoor solar cooking and day lighting applications.
机译:设计,模拟和制造了一种新颖的装置,用于用于室内太阳能烹饪和日光照明的利用太阳能。这里,无论使用三个光学组件,VIZ都是无论太阳的位置如何,都已经实现了一种固定取向准直的浓缩阳光束。具有双轴跟踪系统的聚光器,反射器和准直器。使用光学扫描模拟模拟两种不同的设计,并比较光学输出。第一个设计使用抛物面反射器,而第二种设计使用菲涅耳透镜作为浓缩器。仿真结果表明,采用抛物面反射器的第一个设计在准直器之后具有52.5%的光学损失,距准直的52.9%的损失距离准直频率为4米。类似地,第二种设计在准直器之后具有50.6%的光学损失,距离准直器的4米处的61.8%。制造了具有自动双轴跟踪的菲涅耳镜头设计的原型,并从早晨到晚上测试系统。始终观察到固定焦点,无论太阳的立场如何,展示了用于运输太阳能用于室内应用的系统的可行性。测量了原型系统的光学损失并与模拟结果进行了比较。发现准直器后的原型的光学损失为61.6%,与模拟结果吻合良好。因此,开发的新型系统可用作室内太阳能烹饪和日照明应用的替代和清洁能源来源。

著录项

  • 来源
    《Solar Energy 》 |2020年第7期| 515-529| 共15页
  • 作者单位

    Acad Sci & Innovat Res Chennai 600113 Tamil Nadu India|CSIR Struct Engn Res Ctr Chennai 600113 Tamil Nadu India;

    CSIR Cent Elect Engn Res Inst CSIR Madras Complex Chennai 600113 Tamil Nadu India;

    CSIR Cent Elect Engn Res Inst CSIR Madras Complex Chennai 600113 Tamil Nadu India;

    Acad Sci & Innovat Res Chennai 600113 Tamil Nadu India|CSIR Cent Elect Engn Res Inst CSIR Madras Complex Chennai 600113 Tamil Nadu India;

  • 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

    Concentrator; Collimator; Dual axis tracking; Fresnel lens; Solar cooking;

    机译:聚光器;准直器;双轴跟踪;菲涅耳透镜;太阳能烹饪;

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