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Fresnel lens solar concentrator design based on geometric optics and blackbody radiation equation

机译:基于几何光学和黑体辐射方程的菲涅尔透镜太阳能聚光器设计

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Abstract: Fresnel lenses have been used for years as solar concentrators in a variety of applications. Several variables effect the final design of these lenses including: lens diameter, image spot distance from the lens, and bandwidth focused in the image spot. Defining the image spot as the geometrical optics circle of least confusion, a set of design equations has been derived to define the groove angles for each groove on the lens. These equations allow the distribution of light by wavelength within the image spot to be calculated. Combining these equations with the blackbody radiation equations power, power distribution, and flux within the image spot can be calculated. In addition, equations have been derived to design a lens to produce maximum flux in a given spot size. Using these equations, a lens may be designed to optimize the spot energy concentration for given energy source.!4
机译:摘要:菲涅耳透镜已在多种应用中用作太阳能聚光器多年。有几个变量会影响这些镜头的最终设计,包括:镜头直径,距镜头的像点距离以及聚焦在像点上的带宽。将像点定义为最少混乱的几何光学圆,已导出了一组设计方程式,以定义镜片上每个凹槽的凹槽角度。这些方程式允许计算图像点内按波长分布的光。将这些方程式与黑体辐射方程式结合起来,即可计算出图像点内的功率,功率分布和通量。另外,已经推导出方程式,以设计透镜以在给定的光斑尺寸下产生最大光通量。使用这些方程式,可以设计一个透镜来优化给定能量源的点能量浓度。!4

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