Optical design of compact linear Fresnel reflector systems

Zhu, Jie and Chen, Ziwei (2017) Optical design of compact linear Fresnel reflector systems. Solar Energy Materials and Solar Cells, 176 . pp. 239-250. ISSN 1879-3398

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Abstract

Compact linear Fresnel reflector (CLFR) system employing multiple receivers is promising with better optical performance and cost effectiveness compared to linear Fresnel reflector (LFR) system, especially for applications with limited ground availabilities. Nevertheless, only few researches have been conducted to evaluate optical design and performance of the CLFR system. In this study, geometrical models for the CLFR system with flat mirrors and receivers are developed on the basis of polar orientation. A comparative study of concentration characteristics among the LFR, CLFR-complete and CLFR-hybrid systems is conducted based on numerical, ray tracing simulation and experimental results. In addition, optical design analyses of the CLFR-hybrid system are carried out from various design aspects. It is noteworthy that the mirror arrangement and focal length should be optimized for the CLFR-hybrid system with considerations of the associated geometrical characteristic and optical performance. For a small-scale CLFR-hybrid system with a solar field width of 2100mm and a focal length of 1500mm, the geometrical concentration ratio of 15.14 and ground utilization ratio of 0.95 are achieved respectively. The findings demonstrate the feasibility of the CLFR-hybrid system with flat mirrors and polar orientation, which provide progress to the concentrated solar power technology.

Item Type: Article
Keywords: Compact linear Fresnel reflector; CLFR-hybrid; Geometrical modelling; Optical performance
Schools/Departments: University of Nottingham, UK > Faculty of Engineering > Department of Architecture and Built Environment
Identification Number: https://doi.org/10.1016/j.solmat.2017.12.016
Depositing User: Eprints, Support
Date Deposited: 14 Dec 2017 13:39
Last Modified: 10 Jan 2018 07:32
URI: http://eprints.nottingham.ac.uk/id/eprint/48735

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