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Structural reliability analysis of a heliostat under wind load for concentrating solar power

机译:风荷载下聚光太阳能定日镜的结构可靠性分析

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A heliostat is a structure whose function is to reflect sunlight to a target receiver. It represents an important element in solar tower power plant (STPP). Heliostat deformations, due to stochastic wind loads and geometrical properties, can degrade optical pointing accuracy and fatigue the structural components. This paper reports on an analytical and numerical program with a goal to improve understanding of the response to wind loading on heliostats reliability.To this end, the main heliostat components, such as pedestal, torque tube and frame, have been modeled for different azimuth and elevation angles. The obtained mathematical models have been used as performance functions in order to evaluate the structural reliability of heliostat. Subset simulation method has been considered to assess this reliability. The uncertainties in wind speed, heliostat dimensions (diameter, thickness, section ...) and heliostat physical properties (yield stress and Young's modulus), have also been taken into account in this study. The results show that the external loads (wind speed) and geometrical properties, such as pedestal and torque tube diameters and truss member sections, have represented an important effect on the heliostat reliability. Therefore, for small heliostats sited in higher wind speed, it is more reliable to use thin torque tube with large diameters. However, a thick torque tube with small diameters are suitable for heliostat placed in lower wind speed.
机译:定日镜是一种结构,其功能是将阳光反射到目标接收器。它代表着太阳能塔式发电厂(STPP)的重要元素。由于随机的风荷载和几何特性,定日镜变形会降低光学指向精度并使结构部件疲劳。本文报告了一个分析和数值程序,旨在增进对定日镜可靠性对风载荷响应的理解。为此,已针对不同的方位角和角度对定日镜的主要组件(例如基座,扭矩管和框架)进行了建模。仰角。获得的数学模型已用作性能函数,以评估定日镜的结构可靠性。已考虑使用子集仿真方法来评估此可靠性。在这项研究中,还考虑了风速,定日镜尺寸(直径,厚度,截面...)和定日镜物理特性(屈服应力和杨氏模量)的不确定性。结果表明,外部载荷(风速)和几何特性(例如基座和扭矩管直径以及桁架构件截面)对定日镜的可靠性产生了重要影响。因此,对于风速较高的小型定日镜,使用大直径的细扭矩管更为可靠。但是,直径较小的厚扭力管适用于风速较低的定日镜。

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