太阳能塔式电站建模与仿真研究进展

Samir Benammar
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引用次数: 3

摘要

近二十年来,聚光太阳能发电技术(CSP)受到了广泛关注。目前已开发的光热技术有抛物面槽、抛物面盘、菲涅耳集热器和太阳塔。然而,这些技术中应用最广泛的是太阳能塔式发电厂(STPP)。本文旨在总结用于模拟STPP性能和可靠性的最新建模方法。综述了文献中用于预测这些STPP热效率的不同分析和数值模型。本文首先对不同光热技术进行了概述和比较。然后重点介绍了STPP技术的概述、现状和主要组件的介绍,包括定日镜场和太阳能接收器。本文还综述了在STPP性能和可靠性建模和仿真方面开展的不同研究工作。总之,这项工作对现有的数值和分析模型进行了全面的回顾,并可以作为指导方针,为太阳能塔式发电厂的未来趋势开发新的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review Study on the Modeling and Simulation of Solar Tower Power Plants
Much attention has been paid to concentrating solar power technologies (CSP) in the last two decades. Among the CSP that have been developed so far are the parabolic trough, the parabolic dish, the Fresnel collectors and the solar tower. However, the most widely used of these technologies is the solar tower power plant (STPP). This review aims to summarize the state-of-the-art modeling approaches used to simulate the performances and the reliability of the STPP. The review includes the different analytical and numerical models used in literature to predict the thermal efficiency of these STPP. A general description and comparison of different CSP technologies are first provided. An overview of STPP technology, current status and a presentation of the major components including the heliostat field and the solar receiver are then highlighted. The different research works, developed on the modeling and simulation of the STPP performances and reliability, are also investigated in this review. In summary, this work presents a comprehensive review of the existing numerical and analytical models and could serve as a guideline to develop new models for future trends in solar tower power plants.
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