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利用风力
1
作者 詹宁斯 富砚 《大众科学》 2000年第8期44-45,共2页
关键词 风力利用 帆船 航行 翼型 吸力
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英国吹遍绿色的风
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作者 杨钦慧 《风力发电》 2004年第2期8-8,共1页
关键词 风力发电 风电装置 风力利用 英国
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日本清洁发电及智能电网展新成果引人关注
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作者 佚名 《农村电工》 2010年第11期47-47,共1页
在横滨国际和平会议中心举行的日本2010年度清洁发电及智能电网展上,众多与太阳能、水力和风力利用有关的新产品和新技术受到关注。
关键词 智能电网 清洁发电 日本 风力利用 太阳能 新技术
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日本清洁发电及智能电网展新成果引人关注
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作者 张君 《山西能源与节能》 2010年第4期96-96,共1页
关键词 智能电网 清洁发电 日本 风力利用 太阳能 新技术
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Limiting Use of Potential Energy Storage Compared to Batteries for a Lebanese Hybrid Wind/PV System
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作者 Mostafa AI Masri Nazih Moubayed 《Journal of Energy and Power Engineering》 2013年第12期2227-2236,共10页
In l,ebanon, hybrid wind/PV systems are used to provide electricity when the public electricity is cut off This paper treats the storage problems of electrical energy generated by the used renewable sources. A theoret... In l,ebanon, hybrid wind/PV systems are used to provide electricity when the public electricity is cut off This paper treats the storage problems of electrical energy generated by the used renewable sources. A theoretical study on two types of electrical energy storage systems is given. These systems are the electrochemical energy storage devices (batteries) and the potential (or hydraulic) energy storage system. In order to find the limiting case of use between these two energy storage systems, economical study and comparison between them are discussed and analyzed. 展开更多
关键词 Reneable energy solar energy xvind turbine energy storage systems BATTERIES potential energy storage system.
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Aerodynamic Effects on TLP Type Wind Turbines and Predictions of the Electricity They Generate
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作者 Yasunori Nihei Hiroyuki Fujioka 《Journal of Marine Science and Application》 2011年第2期139-149,共11页
This research proposes a new offshore wind energy generation system that uses a tension leg platform (TLP) and describes experiments performed on a TLP type wind turbine in both waves and wind. The following conclusio... This research proposes a new offshore wind energy generation system that uses a tension leg platform (TLP) and describes experiments performed on a TLP type wind turbine in both waves and wind. The following conclusions can be made from the results of this research. 1) In the case of coexisting wave-wind fields, the wind effect stabilizes the pitch motion. 2) The wind effect decreases vibration of the mooring lines when waves and wind coexist. In particular, the springing (2nd or 3rd order force) also decreases in this field. 3) It can be estimated that the reduction in the rate of generation of electrical power can be up to about 6% as a result of the heel angle. In addition, the annual amount of electricity generated was estimated along with the utilization factor based on the experimental results. 展开更多
关键词 tension leg platform (TLP) offshore wind turbine tank test in coexisting wave-wind condition annual amount of electricity generated
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