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Development of a new method to estimate the incident solar flux on central receivers from deteriorated heliostats

机译:研发了一种新的方法来估计定日镜质量下降对中央接收器的入射太阳通量

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This work proposes a new empirical direct methodology to estimate both the solar flux distribution and intensity on the surface of central receivers. In solar power tower plants with deteriorated heliostats, the numerical simulations to estimate the incident solar flux are not precise. Hence the thermal behaviour of the receivers cannot be determined. In those cases, direct measurement or semi-empirical methodologies are required to characterize the radiant power on the receiver.The new methodology proposed, named "Superposition method", consists in the hourly characterization of the reflected solar beam of each individual heliostat by means of a pyrheliometer, a passive screen, a flux sensor, a camera and digital image analysis. According to the aiming strategy used during receiver operation, each individual solar flux distribution and intensity can be gathered to obtain the total incident radiant power on the solar receiver. This non-real-time method has the advantage of reproducing any solar flux distribution on the receiver at present and past time. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作提出了一种新的经验直接方法来估计中央接收器表面的太阳通量分布和强度。在定日镜老化的太阳能塔式电厂中,估算入射太阳通量的数值模拟并不精确。因此,不能确定接收器的热行为。在这些情况下,需要直接测量或半经验方法来表征接收器上的辐射功率。提出的新方法称为“叠加法”,包括每小时对每个定日镜的反射太阳光束进行表征。高温计,无源屏幕,通量传感器,照相机和数字图像分析的工具。根据接收器操作期间使用的瞄准策略,可以收集每个单独的太阳通量分布和强度,以获得在太阳接收器上的总入射辐射功率。这种非实时方法的优点是可以在当前和过去的时间上再现接收器上的任何太阳通量分布。 (C)2018 Elsevier Ltd.保留所有权利。

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