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Design and Simulation of Small Heliostat Field at Universiti Teknologi PETRONAS Campus

机译:石油校园技术大学小升光场的设计与仿真

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Solar Power Tower systems have attracted the worldwide interest since the early 1980s and heliostat fields have been an area for development due to their high cost and important function. This paper presents a mathematical model to design a small heliostat field with 3 dual-axis heliostat units located in Universiti Teknologi PETRONAS, Malaysia. The model mainly relies on the sun position and tower and heliostat geometrical relations, namely, tower height and the ground distance of the concerned heliostats. The heliostat field layout is configured according to radial staggered pattern then varying the tower height and heliostat ground distance to calculate the facing and target angle of each heliostat. TRNSYS software was used to simulate the power output for the proposed heliostat field. The modeled heliostat field could deliver 10 kW for 12.4 m~2 reflective area for latitude 4.3° N. A solar power tower testing facility will be built according to the design specifications produced in this paper and TRNSYS simulation results are required to estimate the power input to the receiver system for sizing purpose in the future.
机译:自20世纪80年代初期以来,太阳能塔系统吸引了全球兴趣,并于预期景区是由于其高成本和重要功能的发展领域。本文介绍了一个数学模型,用于设计一个小型光晕场,其中3个双轴光明衣,位于马来西亚彼得克罗斯大学的大学。该模型主要依赖于太阳位置和塔和塔和光晕几何关系,即塔楼高度和有关的Heliostats的地面距离。根据径向交错图案配置了光晕场布局,然后改变塔高度和Heliostat接地距离以计算每个Heliostat的面对和目标角度。 TRNSYS软件用于模拟所提出的Heliostat字段的电源输出。所建模的Heliostat领域可以为纬度为4.4 m〜2的反射区域提供10千瓦。太阳能塔测试设施将根据本文生产的设计规范构建,并且需要TRNSYS仿真结果来估计电源输入所需的仿真结果在未来定向目的的接收器系统。

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