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Selecting a proper design period for heliostat field layout optimization using Campo code

机译:使用Campo代码为定日镜场布局选择选择合适的设计周期

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摘要

In this paper, different approaches are considered to calculate the cosine factor which is utilized in Campo code to expand the heliostat field layout and maximize its annual thermal output. Furthermore, three heliostat fields containing different number of mirrors are taken into consideration. Cosine factor is determined by considering instantaneous and time-average approaches. For instantaneous method, different design days and design hours are selected. For the time average method, daily time average, monthly time average, seasonally time average, and yearly time averaged cosine factor determinations are considered. Results indicate that instantaneous methods are more appropriate for small scale heliostat field optimization. Consequently, it is proposed to consider the design period as the second design variable to ensure the best outcome. For medium and large scale heliostat fields, selecting an appropriate design period is more important. Therefore, it is more reliable to select one of the recommended time average methods to optimize the field layout. Optimum annual weighted efficiency for heliostat fields (small, medium, and large) containing 350, 1460, and 3450 mirrors are 66.14%, 60.87%, and 54.04%, respectively.
机译:在本文中,考虑使用不同的方法来计算余弦因数,该余弦因数在Campo代码中用于扩展定日镜场的布局并最大化其年度热量输出。此外,考虑了包含不同数量的反射镜的三个定日镜场。余弦因子通过考虑瞬时和时间平均方法来确定。对于瞬时方法,选择了不同的设计日期和设计时间。对于时间平均方法,应考虑每日平均时间,每月平均时间,季节性平均时间和年度平均余弦因子确定。结果表明,瞬时方法更适合于小型定日镜场优化。因此,建议将设计周期视为第二个设计变量,以确保获得最佳结果。对于中型和大型定日镜场,选择合适的设计时间更为重要。因此,选择一种推荐的时间平均方法来优化现场布局更为可靠。包含350、1460和3450反射镜的定日镜场(小,中和大)的最佳年度加权效率分别为66.14%,60.87%和54.04%。

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