ASSESSMENT OF SOLAR ENERGY POTENTIAL FOR A RADIALLY STAGGERED HELIOSTATS FIELD USING SUN TRACKING METHOD

M. E. Siddiqui
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Abstract

This article deals with the potential assessment of tower type solar thermal power system. An algorithm was developed to employ sun-tracking method, which provides the characteristic angles of the heliostats such that the incoming beams of sun rays are reflected to the receiver. A suite of MATLAB code was developed to implement the mathematical models for a quick evaluation of solar energy potential in a radially staggered heliostat field for the capital city of Kingdom of Saudi Arabia, Riyadh. An existing clear-sky model in the literature was used to compute hourly insolation. Optical efficiencies and heat collected by the receiver (from individual heliostat in the field on hourly basis) were computed and the monthly-averaged daily results were presented zone-wise and for the complete heliostat field. It was observed that the optical efficiency of the heliostat decreases with increasing distance from the receiver tower; this was due to increasing spillage of the reflected rays and decreasing cosine efficiency with increasing distance of the heliostat from the receiver tower. Results showed that annual average optical efficiency of the field is nearly forty-nine percent.
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利用太阳跟踪法评估径向交错定日镜场的太阳能潜力
本文对塔式太阳能热发电系统的潜力进行了评价。提出了一种采用太阳跟踪法的算法,该算法提供定日镜的特征角度,使入射的太阳光线反射到接收器上。开发了一套MATLAB代码来实现数学模型,用于快速评估沙特阿拉伯王国首都利雅得径向交错定日镜场的太阳能潜力。利用文献中已有的晴空模式计算每小时日晒。计算了接收器收集的光效率和热量(每小时从野外的单个定日镜收集),并给出了按区域和整个定日镜场的月平均日结果。观察到定日镜的光学效率随距离接收塔的增加而降低;这是由于随着定日镜与接收塔距离的增加,反射光线的散射增加,余弦效率降低。结果表明,该领域的年平均光学效率接近49%。
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