Testing and optical modeling of novel concentrating solar receiver geometries to increase light trapping and effective solar absorptance

J. Yellowhair, C. Ho, Jesus D. Ortega, J. Christian, C. Andraka
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引用次数: 11

Abstract

Concentrating solar power receivers are comprised of panels of tubes arranged in a cylindrical or cubical shape on top of a tower. The tubes contain heat-transfer fluid that absorbs energy from the concentrated sunlight incident on the tubes. To increase the solar absorptance, black paint or a solar selective coating is applied to the surface of the tubes. However, these coatings degrade over time and must be reapplied, which reduces the system performance and increases costs. This paper presents an evaluation of novel receiver shapes and geometries that create a light-trapping effect, thereby increasing the effective solar absorptance and efficiency of the solar receiver. Several prototype shapes were fabricated from Inconel 718 and tested in Sandia’s solar furnace at an irradiance of ~30 W/cm2. Photographic methods were used to capture the irradiance distribution on the receiver surfaces. The irradiance profiles were compared to results from raytracing models. The effective solar absorptance was also evaluated using the ray-tracing models. Results showed that relative to a flat plate, the new geometries could increase the effective solar absorptance from 86% to 92% for an intrinsic material absorptance of 86%, and from 60% to 73% for an intrinsic material absorptance of 60%.
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新型聚光太阳能接收器几何形状的测试和光学建模,以增加光捕获和有效的太阳能吸收
聚光太阳能接收器由安装在塔顶的圆柱形或立方形的管板组成。这些管子含有传热流体,可以吸收集中在管子上的太阳光的能量。为了增加太阳能吸收率,在管的表面涂上黑色涂料或太阳能选择性涂层。然而,随着时间的推移,这些涂层会降解,必须重新涂抹,这会降低系统性能并增加成本。本文介绍了一种新型接收器形状和几何形状的评估,这种形状和几何形状可以产生光捕获效应,从而增加太阳能接收器的有效太阳能吸收率和效率。用Inconel 718制作了几个原型形状,并在桑迪亚的太阳炉中以~30 W/cm2的辐照度进行了测试。采用摄影方法捕捉了接收机表面的辐照度分布。辐照度曲线与射线追踪模型的结果进行了比较。利用射线追踪模型对有效太阳吸收率进行了评价。结果表明,相对于平板,当材料吸收率为86%时,有效吸收率从86%提高到92%;当材料吸收率为60%时,有效吸收率从60%提高到73%。
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