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Multi-aiming Strategy Design for Quadruple Prism Shaped Central Receiver in Solar Power Tower System
被引量:
2
1
作者
Wenjun Huang
yi
ngmei Qi
+2 位作者
fuxing yi
Dewen Li
Hao Wang
《IEEE/CAA Journal of Automatica Sinica》
SCIE
EI
CSCD
2017年第2期223-230,共8页
For solar power tower technology, the improvement of interception efficiency of heliostat field and the extension of central receiver U+02BC s life time are two technical difficulties. To the receiver, higher intercep...
For solar power tower technology, the improvement of interception efficiency of heliostat field and the extension of central receiver U+02BC s life time are two technical difficulties. To the receiver, higher interception efficiency means more thermal shocks and stronger stresses of high temperatures mainly contribute to the reduction of receiver's life time. To address these problems, a semi-random distribution strategy is proposed to select the best aiming point of the heliostat, and the distribution of onedimensional array arranged on the centerline of the receiver is carried out for further optimization. It is shown by simulation that through our optimization the temperature distribution on the receiver surface becomes much more uniform while maintaining acceptable interception efficiency. © 2017 Chinese Association of Automation.
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关键词
PRISMS
Solar
energy
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题名
Multi-aiming Strategy Design for Quadruple Prism Shaped Central Receiver in Solar Power Tower System
被引量:
2
1
作者
Wenjun Huang
yi
ngmei Qi
fuxing yi
Dewen Li
Hao Wang
机构
Department of Control Science and Engineering
Zhejiang Supcon Solar Technology CO.
出处
《IEEE/CAA Journal of Automatica Sinica》
SCIE
EI
CSCD
2017年第2期223-230,共8页
基金
supported by National Natural Science Foundation of China(61273100)
High Tech Research and Development Program(2014-GX-206)
文摘
For solar power tower technology, the improvement of interception efficiency of heliostat field and the extension of central receiver U+02BC s life time are two technical difficulties. To the receiver, higher interception efficiency means more thermal shocks and stronger stresses of high temperatures mainly contribute to the reduction of receiver's life time. To address these problems, a semi-random distribution strategy is proposed to select the best aiming point of the heliostat, and the distribution of onedimensional array arranged on the centerline of the receiver is carried out for further optimization. It is shown by simulation that through our optimization the temperature distribution on the receiver surface becomes much more uniform while maintaining acceptable interception efficiency. © 2017 Chinese Association of Automation.
关键词
PRISMS
Solar
energy
Keywords
Concentrated solar power(CSP)
distribution in one-dimensional array
interception efficiency
multi-aiming strategy
quadruple prism shaped receiver
分类号
TM615 [电气工程—电力系统及自动化]
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Multi-aiming Strategy Design for Quadruple Prism Shaped Central Receiver in Solar Power Tower System
Wenjun Huang
yi
ngmei Qi
fuxing yi
Dewen Li
Hao Wang
《IEEE/CAA Journal of Automatica Sinica》
SCIE
EI
CSCD
2017
2
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