太阳的收获:一种具有成本效益的太阳能热技术,同时在发展中的太阳带地区提供负担得起的能源并创造大量就业机会

Punit V. Gharat, Snehal S. Bhalekar, Deepankar Biswas, Vishwanath H. Dalvi, Narendra V. Shenoy, Sudhir V. Panse, Suresh P. Deshmukh, Jyeshtharaj B. Joshi
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摘要

在这里,我们报告了一种基于抛物线槽集热器(PTC)技术的经济高效的太阳能集热器,它具有三个显著的特点。首先,与使用大型弯曲反射器的昂贵(约170美元/平方米孔径)的最先进的ptc不同,该反射器由放置在激光切割抛物线肋上的多个长矩形镜面玻璃条组成,以产生精确的反射形状,集中比为38(与最先进的技术相当)。其次,整个组装是螺栓。它可以装在箱子里交付,并且可以很容易地在所需的地点安装:与最先进的ptc形成鲜明对比,ptc需要在专门装备的车间制造并使用起重机安装。第三,通过采用有限元分析和光线追踪的综合优化指导下的几项创新,将系统成本降至82美元/平方米孔径以下(根据NAE的建议)。总而言之,该解决方案承诺比光伏更具成本效益的基本负荷电力,因此在实现联合国可持续发展目标(SDG-7)方面有很长的路要走。此外,它可以使用在阳光带的发展中地区随时可用的工业设备制造,并使用非熟练工人安装。因此,它可以形成一个大规模、分散的微型光热发电产业的核心,为发展中地区的大量人口提供有尊严的就业机会(可持续发展目标8)。我们把这项技术称为太阳的收割。
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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Harvest of the Sun: A cost effective solar thermal technology to simultaneously provide affordable energy and generate mass employment in developing Sun-belt regions

Here we report a cost effective solar harvestor based on parabolic trough collector (PTC) technology with three remarkable characteristics. First, unlike the expensive (~USD 170/m2-aperture) state-of-the-art PTCs which use large curved reflectors, this reflector is composed of a plurality of long rectangular mirrored strips of glass placed on laser-cut parabolic ribs to yield an accurate reflecting shape giving a concentration ratio of 38 (comparable to the state-of-the-art). Second, the entire assembly is on bolts. It can be delivered in boxes, and can easily be erected on desired site: in stark contrast to state-of-the art PTCs, which need to be fabricated in a specially equipped workshop and installed using cranes. Third, by incorporating several innovations guided by comprehensive optimization using finite element analysis and ray tracing, the cost of the system has been brought below USD 82/m2-aperture (as per the recommendation of NAE). Taken together, this solution promises more cost-effective base load electricity than Photovoltaics, hence goes a long way toward meeting the UN Sustainable Development Goal of Affordable Energy (SDG-7). Further, it can be fabricated using industrial equipment that is readily available in the developing regions of the Sun-belt and installed using unskilled labor. Hence, it can form the core of a massive, decentralized, micro-CSP industry that can provide dignified employment to large numbers of people in developing regions (SDG-8). We have termed this technology Harvest of the Sun.

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