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Geometric and Optical Efficiency Study for Solar Parabolic Trough Concentrator Using the Deflectometry Technique

机译:使用偏转测量技术的太阳抛抛抛光槽的几何和光学效率研究

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Concentrating solar power (CSP) technologies are the most promising alternative to the high demand of electrical energy and to the consumption of fossil fuels. The purpose of this work is the technical study and the optical qualification of a solar parabolic trough concentrator assembled and installed in the research platform of Green Energy Park in Morocco (GEP-IRESEN Benguerir). The qualification of the mirrors is necessary to control the performance of the collector and the optical efficiency because the design of the parabolic shape of the mirrors seems very difficult and requires a high precision equipment. In this paper, deflectometry measurements are used to analyze the slope errors and determine the optical deformation of the collector. These results are then used with the ray tracing software (SOLTRACE) to calculate and analyze the optical efficiency of the collector. The comparison of nominal and the measured thermal energy is also performed. The final results show significant thermal energy losses due to the impact of the optical errors on the thermal efficiency and collector performance.
机译:集中太阳能(CSP)技术是最有希望的电能需求和化石燃料消耗的替代方案。这项工作的目的是技术研究和太阳能抛物面槽浓缩器的光学资格,并安装在摩洛哥绿色能源公园的研究平台(GEP-Iriesen Benguerir)。镜子的资格是控制收集器的性能和光学效率所必需的,因为镜子的抛物线形状的设计似乎非常困难,并且需要高精度的设备。在本文中,使用偏转测量来分析斜率误差并确定收集器的光学变形。然后将这些结果与光线跟踪软件(Soltrace)一起使用以计算和分析收集器的光学效率。还进行了标称和测量的热能的比较。由于光学误差对热效率和收集器性能的影响,最终结果显示出显着的热能损失。

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