首页> 外文会议>Conference on New Concepts in Solar and Thermal Radiation Conversion >Rugate filter window coating for improvement of vacuum solar thermal absorber efficiencies
【24h】

Rugate filter window coating for improvement of vacuum solar thermal absorber efficiencies

机译:用于改善真空太阳能热吸收器效率的粗糙过滤器窗涂层

获取原文

摘要

Solar thermal absorbers experience heat losses at high temperatures, thus limiting their efficiencies. In this work we present an InfraRed (IR) window coating capable of recycling thermal radiation back to the absorber to reduce losses and improve efficiencies. This mechanism is what we call cold-side external photon recycling. Several designs have been investigated in a preliminary study, ranging from a simple alternation of two different optical materials, as in the case of a Distributed Bragg Reflector (DBR) design, to more complex structures like the rugate filters. The ideal design of a rugate filter makes use of a huge number of different optical materials and layers, useful to reach a continuous variation of the refractive index profile which guarantee a minimization of the undesired reflections. Here, we show that some of these advantages can still be obtained by using a limited number of materials coupled with a proper design, and we extend prior theoretical work to include a realistic set of materials for ease of fabrication and validation. The resulting IR mirror, based on a rugate-multilayer structure, presents favorable properties: the high transmissivity in the visible region of the spectrum allows the Solar radiation to reach the absorber, without altering its performance greatly; instead, a reflection window width of almost 1 μm in the mid-IR region allows for partial recovery of heat radiated by the absorber that otherwise would be lost, and the reduced number of materials can simplify fabrication. Finally, the design has been developed for the particular case of a high-vacuum flat solar thermal panel, but it could be applied to any solar thermal device with an emissive surface without altering the absorber performance greatly.
机译:太阳能热吸收剂在高温下经历热损失,从而限制了它们的效率。在这项工作中,我们介绍了一种红外(IR)窗涂层,能够将热辐射回收回吸收器以减少损失并提高效率。这种机制是我们所谓的冷侧外部光子回收。已经在初步研究中研究了几种设计,从两种不同的光学材料的简单交替等等,如分布式布拉格反射器(DBR)设计的情况下,以更复杂的结构如顽固的过滤器。粗糙过滤器的理想设计利用了大量的不同光学材料和层,可用于达到折射率轮廓的连续变化,保证最小化不希望的反射。在这里,我们表明这些优点中的一些仍然可以通过使用与适当的设计耦合的有限数量的材料来获得,并且我们将现有的理论工作延长以包括易于制造和验证的现实材料集。由此产生的IR镜,基于粗糙 - 多层结构,呈现有利的性质:光谱的可见区域中的高透射率允许太阳辐射到达吸收器,而不会使其性能变化;相反,中红外区域的反射窗口宽度近1μm允许通过否则将丢失的吸收器部分恢复热量,并且减少的材料数量可以简化制造。最后,已经为高真空扁平太阳能热面板的特定情况开发了设计,但是它可以应用于具有发光表面的任何太阳能热装置,而不大大改变吸收器性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号