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A fast and accurate methodology for the calculation of the shading and blocking efficiency in central receiver systems

机译:一种快速准确的方法,用于计算中央接收系统中的阴影和阻塞效率

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In order to determine the efficiency factors of central receiver systems (CRS) in a reasonable time frame, in particular those relating to shading and blocking, the performance simulation and optimisation codes typically use simplification techniques. One frequent simplification is the assumption that the sunshape model is a point source sun.This paper examines the effect of the sunshape model on the shading efficiency, the findings illustrating a dependent relationship between the two. In particular, if the sunshape model considers the finite size of the solar disk, the performance results depend on the angle that the candidate heliostat forms with the main direction.Additionally, with the objective of reducing both computation times and error levels, a new method for the determination of the shading and blocking efficiency is presented, developed specifically for use in performance simulation and optimisation applications in CRS. The proposed method is compared with other methods, using the results of a conventional Monte-Carlo ray-tracing method as reference, through a study of computation times and error levels. The results demonstrate that the proposed methodology produces a reduction in both computation times and error values. The causes of the main errors associated with each method are also discussed. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为了确定中央接收器系统(CRS)在合理的时间帧中的效率因素,特别是与阴影和阻塞有关的那些,性能模拟和优化代码通常使用简化技术。一种频繁的简化是假设模型是点源太阳的假设。这篇论文检查了Sunshape模型对阴影效率的影响,结果说明了两者之间的依赖关系。特别是,如果Sunshape模型考虑太阳能磁盘的有限尺寸,性能结果取决于候选先向舵形式与主要方向形式的角度。提出,目的是减少计算时间和误差水平,一种新方法为了确定阴影和阻塞效率,专门用于CRS中的性能仿真和优化应用。将所提出的方法与其他方法进行比较,使用传统的蒙特卡罗射线跟踪方法作为参考的结果,通过研究计算时间和误差水平。结果表明,所提出的方法生成计算时间和误差值的减少。还讨论了与每种方法相关联的主要错误的原因。 (c)2020 elestvier有限公司保留所有权利。

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