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Recently, it was learned from Hubei University of Technology that a few days ago, at the 41st Geneva International Exhibition of Inventions, the "concentrated high-efficiency rooftop photovoltaic power generation system" invented by the team of Lv Hui, associate professor of the university, won a special gold award
.
This is the first time that a university in mainland China has won a special gold medal
at the Geneva International Exhibition of Inventions.
According to Lv Hui, their set of technology, using the principle of concentrating and spectroscopic, collects sunlight through a planar Finier mirror, and when projected on a new photovoltaic material, it splits light to make full use of sunlight energy
.
The utilization rate of sunlight by ordinary photovoltaic materials is about 20%, while the utilization rate of sunlight in the system reaches 44%, and the power generation of the system is twice
that of traditional crystalline silicon photovoltaics.
The energy consumption recovery cycle of traditional crystalline silicon photovoltaic power generation is 6-7 years, and the energy consumption recovery cycle of concentrated photovoltaic power generation of the invention is only 6-7 months
.
Moreover, batteries, Finier mirrors, and other materials are very inexpensive and readily available
.
The large-scale use of this technology can be less expensive than nuclear and thermal power
.
Recently, it was learned from Hubei University of Technology that a few days ago, at the 41st Geneva International Exhibition of Inventions, the "concentrated high-efficiency rooftop photovoltaic power generation system" invented by the team of Lv Hui, associate professor of the university, won a special gold award
.
This is the first time that a university in mainland China has won a special gold medal
at the Geneva International Exhibition of Inventions.
According to Lv Hui, their set of technology, using the principle of concentrating and spectroscopic, collects sunlight through a planar Finier mirror, and when projected on a new photovoltaic material, it splits light to make full use of sunlight energy
.
The utilization rate of sunlight by ordinary photovoltaic materials is about 20%, while the utilization rate of sunlight in the system reaches 44%, and the power generation of the system is twice
that of traditional crystalline silicon photovoltaics.
The energy consumption recovery cycle of traditional crystalline silicon photovoltaic power generation is 6-7 years, and the energy consumption recovery cycle of concentrated photovoltaic power generation of the invention is only 6-7 months
.
Moreover, batteries, Finier mirrors, and other materials are very inexpensive and readily available
.
The large-scale use of this technology can be less expensive than nuclear and thermal power
.
According to Lv Hui, their set of technology, using the principle of concentrating and spectroscopic, collects sunlight through a planar Finier mirror, and when projected on a new photovoltaic material, it splits light to make full use of sunlight energy
.
The utilization rate of sunlight by ordinary photovoltaic materials is about 20%, while the utilization rate of sunlight in the system reaches 44%, and the power generation of the system is twice
that of traditional crystalline silicon photovoltaics.
The energy consumption recovery cycle of traditional crystalline silicon photovoltaic power generation is 6-7 years, and the energy consumption recovery cycle of concentrated photovoltaic power generation of the invention is only 6-7 months
.
Moreover, batteries, Finier mirrors, and other materials are very inexpensive and readily available
.
The large-scale use of this technology can be less expensive than nuclear and thermal power
.
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Disclaimer: Some of the public information collected by this website comes from the Internet, and the purpose of reprinting is to convey more information and for network sharing, which does not mean that this site agrees with its views and is responsible for its authenticity, nor does it constitute any other suggestions, and the content of the article is for reference
only.
If you find a work on the website that infringes your intellectual property rights, please contact us and we will promptly modify or delete
it.
only.
If you find a work on the website that infringes your intellectual property rights, please contact us and we will promptly modify or delete
it.
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Responsible editor: Jiang Dan
Responsible editor: Jiang Dan
Responsible editor: Jiang DanPrevious:The localization rate of Hualong No.
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1 first reactor nuclear power unit equipment reached 89%
Next:The first new energy delivery channel in Gansu Province began to be erected
Previous:The localization rate of Hualong No.
1 first reactor nuclear power unit equipment reached 89%
The localization rate of Hualong No. 1 first reactor nuclear power unit equipment reached 89%
1 first reactor nuclear power unit equipment reached 89%
Next:The first new energy delivery channel in Gansu Province began to be erected
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