Multi-objective optimization of the solar absorptivity distribution inside a cavity solar receiver for solar power towers
Multi-objective optimization of the solar absorptivity distribution inside a cavity solar receiver for solar power towers
复制标题
太阳能塔腔体太阳能接收器内太阳能吸收率分布的多目标优化
DOI:
10.1016/j.solener.2017.09.044
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发表时间:
2017-12
期刊:
影响因子:
6.7
通讯作者:
Tao Wen-Quan
中科院分区:
文献类型:
--
作者:
Wang Kun;He Ya-Ling;Li Pei-Wen;Li Ming-Jia;Tao Wen-Quan
The solar flux distribution on the receiver of a solar power tower is usually not uniform, which can cause a number of problems for the energy efficiency and system safety, particularly, the local hot spot and the thereby caused thermal stress and thermal deformation. Therefore, homogenization of the solar flux distribution is critical and important. The objective of the present study is to homogenize the solar flux distribution while keeping the optical loss (reflection loss) as low as possible through optimization of the distribution of the solar absorptive coating. An integrated approach coupling the Monte-Carlo ray tracing method and the Gebhart method is applied to simulate the process of the solar radiation transfer in the solar power system. The multi-objective optimization of the distribution of solar absorptivity is performed by using the non-dominated sorting genetic algorithm. The following conclusions are drawn from the study. (1) The improvement of the uniformity of the distribution of solar flux can lead to more reflection loss due to the fact that more solar energy is distributed on the position with greater view factor to the aperture; (2) The Pareto optimal front obtained from the multi-objective optimization provides the trade-off between the non-uniformity of the solar flux distribution and the reflection loss. (3) The optimal solar absorptivity distribution provided by the Pareto optimal front can significantly flatten the solar flux distribution at a minimum cost of optical loss. (4) The optimal distribution of the solar absorptivity is approximately opposite to the distribution of solar flux projected onto the active surfaces from the heliostat fields.
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影响因子:
11.2
作者:
A. Avila-Marin;J. Fernández-Reche;F. Tellez
通讯作者:
A. Avila-Marin;J. Fernández-Reche;F. Tellez
影响因子:
6.4
作者:
Du Bao-Cun;He Ya-Ling;Zheng Zhang-Jing;Cheng Ze-Dong
通讯作者:
Cheng Ze-Dong
DOI:
10.1016/j.ijheatmasstransfer.2017.05.075
发表时间:
2017-10-01
影响因子:
5.2
作者:
Du, Bao-Cun;He, Ya-Ling;Zhu, Han-Hui
通讯作者:
Zhu, Han-Hui
影响因子:
8.7
作者:
Alvaro Sanchez-Gonzalez;D. Santana
通讯作者:
Alvaro Sanchez-Gonzalez;D. Santana
DOI:
--
发表时间:
2016
期刊:
--
影响因子:
--
作者:
Ahmed M. Daabo;S. Mahmoud;R. AL-Dadah
通讯作者:
Ahmed M. Daabo;S. Mahmoud;R. AL-Dadah