首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >NOVEL METHOD TO DESIGN NON-IDEAL PARABOLIC DISH CONCENTRATOR FOR CONCENTRATED PHOTOVOLTAIC APPLICATION; ITS THEORETICAL ANALYSIS AND EXPERIMENTAL CHARACTERISATION FOR DESIGN VALIDATION
【24h】

NOVEL METHOD TO DESIGN NON-IDEAL PARABOLIC DISH CONCENTRATOR FOR CONCENTRATED PHOTOVOLTAIC APPLICATION; ITS THEORETICAL ANALYSIS AND EXPERIMENTAL CHARACTERISATION FOR DESIGN VALIDATION

机译:设计非理想抛物线料浓缩光伏应用的新方法;其设计验证的理论分析与实验特征

获取原文

摘要

A concentrating photovoltaic (CPV) system concentrates solar radiation onto a photovoltaic (PV) cell using optics to replace the high cost of PV cell with inexpensive concentrator material. Parabolic dish concentrators (PDC) offer the highest optical and thermal efficiencies of all the current concentrator options. True paraboloidal geometry results in a point focus PDC while a non-ideal PDC produces a spatially distributed image at the focal plane. A simple and novel method is devised to design a non-ideal PDC to achieve a spatially distributed focus for a flat target plane for use in CPV systems. A basic geometrical parabolic curve construction method was modified to distribute the solar flux without geometrical power loss and a non-ideal PDC was built for a geometrical concentration ratio of 100. The design of the PDC was analysed by a ray tracing method employing principles and laws of geometrical optics. An analytical investigation of the built PDC enabled calculation of an energy efficiency of 59%. The resulting energy concentration ratio shows a beam uniformity of 72.3% across the cell. A parametrical analysis was also performed by varying the PDC surface reflectivity and the PDC geometry to predict a maximum energy efficiency of 85.5% and a uniform beam profile across the cell without geometrical power loss.
机译:浓缩光伏(CPV)系统将太阳辐射浓缩到光伏(PV)电池上,使用光学器件用廉价的浓缩器材料代替PV电池的高成本。抛物线碟聚光器(PDC)提供所有当前集中器选项的最高光学和热效。真正的抛物面几何形状导致点聚焦PDC,而非理想PDC在焦平面产生空间分布的图像。设计了一种简单的新方法,设计了设计非理想的PDC,以实现用于平板目标平面的空间分布焦点,以用于CPV系统。修改了基本的几何抛物线曲线施工方法以分配太阳能磁通,没有几何功率损耗,采用了100分100的几何浓度比构成了非理想的PDC。通过采用原理和法律的射线跟踪方法分析了PDC的设计几何光学。构建PDC的分析调查使能量效率为59%的计算。所得到的能量浓度比在细胞上显示出72.3%的光束均匀性。还通过改变PDC表面反射率和PDC几何形状来进行参数分析,以预测电池的最大能量效率为85.5%,并且在没有几何功率损失的情况下均匀的光束轮廓。

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