Estimating costs of heliostat production at high volumes based on a small-scale prototype

A. Buchroithner, G. Ganapathi, A. Palisoc
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Abstract

Reducing the costs of heliostats is crucial for the worldwide deployment of Concentrated Solar Power (CSP). CSP offers a number of advantages over photovoltaic at large scale power generation, such as lower cost and the option of thermal energy storage. However, the costs of a power tower plant are dominated by heliostats, which are usually 50% of the entire facility. NASA5s Jet Propulsion Laboratory was awarded funding by the DOE SunShot Initiative to develop a low-cost, rigid foam-based solar concentrator to meet installed cost goals of S75/m2 vs. current costs of - $200-250/m2. The design approach was validated by building and testing of a small-scale (6m2) heliostat prototype. Based on the findings of this prototype costs estimates for high production volume using industrial manufacturing technologies were conducted. The findings of these studies as well as lessons learned from manufacturing of the prototype are presented in this paper.
在小型原型的基础上估算定日镜大批量生产的成本
降低定日镜的成本对于集中太阳能发电(CSP)的全球部署至关重要。CSP在大规模发电方面比光伏发电有很多优势,比如成本更低,可以选择热能储存。然而,塔式发电厂的成本主要是定日镜,它通常占整个设施的50%。nasa喷气推进实验室获得了美国能源部SunShot计划的资助,用于开发一种低成本、基于刚性泡沫的太阳能聚光器,以满足75美元/平方米的安装成本目标,而目前的成本为200-250美元/平方米。通过建造和测试一个小型(6平方米)定日镜原型,验证了设计方法。根据这个原型的发现,进行了使用工业制造技术的高产量成本估计。本文介绍了这些研究的结果以及从原型制造中吸取的教训。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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