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ATMOSPHERIC ATTENUATION IN CENTRAL RECEIVER SYSTEMS FROM DNI MEASUREMENTS

机译:DNI测量在中央接收系统中的大气衰减

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Atmospheric attenuation loss between the heliostat field and receiver has been recognized as a significant source of loss in Central Receiver System. Methods that can improve estimation of attenuation loss using available measurements will be useful in reducing uncertainty in estimation of CSP plant production, particularly in locations and climates that differ in atmospheric composition from typical arid desert locations. In clear sky situations, Direct Normal Irradiance (DNI) is primarily impacted by aerosols in the atmosphere. Aerosols extinct direct radiation with the photons either being absorbed or scattered based on the aerosols optical characteristics. As aerosol loading is high close to the surface, the attenuation loss between heliostat and receivers is significantly influenced by amount of aerosols present on a particular day. The purpose of the study is to understand the impact of aerosols on attenuation loss and model this loss as a function of ratio of measured DNI to a calculated DNI for an "aerosol-free" atmosphere. The assumption here is that the reduction in clear sky DNI due to aerosols when compared to a theoretical "clean environment" value can provide valuable information about aerosol loading at the surface and therefore attenuation loss between heliostat and receiver. Preliminary analysis shows that such an approach is viable.
机译:定日镜场和接收器之间的大气衰减损耗已被认为是中央接收器系统中的重要损耗源。可以使用现有测量方法改进衰减损耗估算的方法将有助于减少CSP工厂产量估算中的不确定性,尤其是在大气成分与典型干旱沙漠地区不同的地点和气候中。在晴朗的天空中,直接法向辐射(DNI)主要受大气中气溶胶的影响。气溶胶会消灭直接辐射,而基于气溶胶的光学特性,光子会被吸收或散射。由于靠近表面的气溶胶负荷很高,定日镜和接收器之间的衰减损失会受到特定日期存在的气溶胶数量的显着影响。该研究的目的是了解气雾剂对衰减损耗的影响,并针对“无气雾剂”大气,将该损耗建模为所测DNI与计算出的DNI之比的函数。这里的假设是,与理论上的“清洁环境”值相比,由气溶胶引起的晴朗天空DNI的减少可以提供有关表面气溶胶负载的有价值的信息,因此可以提供定日镜和接收器之间的衰减损耗。初步分析表明,这种方法是可行的。

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