Solar Energy Resource Characteristics of Photovoltaic Power Station in Shandong Province
[Objective] The aim was to analyze characters of solar energy in photovoltaic power stations in Shandong Province. [Method] The models of total solar radiation and scattered radiation were determined, and solar energy resources in photovoltaic power stations were evaluated based on illumination in h...
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Veröffentlicht in: | Hunan agricultural science & technology newsletter : HASTN 2013-04, Vol.14 (4), p.666-666 |
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creator | Xue, Deqiang Wang, Xin Wang, Xintang |
description | [Objective] The aim was to analyze characters of solar energy in photovoltaic power stations in Shandong Province. [Method] The models of total solar radiation and scattered radiation were determined, and solar energy resources in photovoltaic power stations were evaluated based on illumination in horizontal plane and cloud data in 123 counties or cities and observed information in Jinan, Fushan and Juxian in 1988-2008. [Result] Solar energy in northern regions in Shandong proved most abundant, which is suitable for photovoltaic power generation; the optimal angle of tilt of photovoltaic array was at 35°, decreasing by 2°-3° compared with local latitude. Total solar radiation received by the slope with optimal angle of tilt exceeded 1 600 kw*h/(m^sup 2^*a), increasing by 16% compared with horizontal planes. The maximal irradiance concluded by WRF in different regions tended to be volatile in 1 020-1 060 W/m^sup 2^. [Conclusion] The research provides references for construction of photovoltaic power stations in Shandong Province. [PUBLICATION ABSTRACT] |
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[Method] The models of total solar radiation and scattered radiation were determined, and solar energy resources in photovoltaic power stations were evaluated based on illumination in horizontal plane and cloud data in 123 counties or cities and observed information in Jinan, Fushan and Juxian in 1988-2008. [Result] Solar energy in northern regions in Shandong proved most abundant, which is suitable for photovoltaic power generation; the optimal angle of tilt of photovoltaic array was at 35°, decreasing by 2°-3° compared with local latitude. Total solar radiation received by the slope with optimal angle of tilt exceeded 1 600 kw*h/(m^sup 2^*a), increasing by 16% compared with horizontal planes. The maximal irradiance concluded by WRF in different regions tended to be volatile in 1 020-1 060 W/m^sup 2^. [Conclusion] The research provides references for construction of photovoltaic power stations in Shandong Province. [PUBLICATION ABSTRACT]</description><identifier>ISSN: 1009-4229</identifier><language>eng</language><publisher>Changsha: Wu Chu (USA-China) Science and Culture Media Corporation</publisher><subject>Accuracy ; Alternative energy sources ; Cities ; Energy consumption ; Energy resources ; Radiation ; Solar energy</subject><ispartof>Hunan agricultural science & technology newsletter : HASTN, 2013-04, Vol.14 (4), p.666-666</ispartof><rights>Copyright Wu Chu (USA-China) Science and Culture Media Corporation Apr 2013</rights><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,776,780</link.rule.ids></links><search><creatorcontrib>Xue, Deqiang</creatorcontrib><creatorcontrib>Wang, Xin</creatorcontrib><creatorcontrib>Wang, Xintang</creatorcontrib><title>Solar Energy Resource Characteristics of Photovoltaic Power Station in Shandong Province</title><title>Hunan agricultural science & technology newsletter : HASTN</title><description>[Objective] The aim was to analyze characters of solar energy in photovoltaic power stations in Shandong Province. [Method] The models of total solar radiation and scattered radiation were determined, and solar energy resources in photovoltaic power stations were evaluated based on illumination in horizontal plane and cloud data in 123 counties or cities and observed information in Jinan, Fushan and Juxian in 1988-2008. [Result] Solar energy in northern regions in Shandong proved most abundant, which is suitable for photovoltaic power generation; the optimal angle of tilt of photovoltaic array was at 35°, decreasing by 2°-3° compared with local latitude. Total solar radiation received by the slope with optimal angle of tilt exceeded 1 600 kw*h/(m^sup 2^*a), increasing by 16% compared with horizontal planes. The maximal irradiance concluded by WRF in different regions tended to be volatile in 1 020-1 060 W/m^sup 2^. [Conclusion] The research provides references for construction of photovoltaic power stations in Shandong Province. 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[Method] The models of total solar radiation and scattered radiation were determined, and solar energy resources in photovoltaic power stations were evaluated based on illumination in horizontal plane and cloud data in 123 counties or cities and observed information in Jinan, Fushan and Juxian in 1988-2008. [Result] Solar energy in northern regions in Shandong proved most abundant, which is suitable for photovoltaic power generation; the optimal angle of tilt of photovoltaic array was at 35°, decreasing by 2°-3° compared with local latitude. Total solar radiation received by the slope with optimal angle of tilt exceeded 1 600 kw*h/(m^sup 2^*a), increasing by 16% compared with horizontal planes. The maximal irradiance concluded by WRF in different regions tended to be volatile in 1 020-1 060 W/m^sup 2^. [Conclusion] The research provides references for construction of photovoltaic power stations in Shandong Province. 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subjects | Accuracy Alternative energy sources Cities Energy consumption Energy resources Radiation Solar energy |
title | Solar Energy Resource Characteristics of Photovoltaic Power Station in Shandong Province |
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