风力涡轮机发展历史概述:第二部分- 1970年代以后

IF 1.5 Q4 ENERGY & FUELS Wind Engineering Pub Date : 2022-09-08 DOI:10.1177/0309524X221122594
P. Gipe, E. Möllerström
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引用次数: 5

摘要

我们回顾了19世纪末至今风力发电机组的发展,总结了一些关键特征。我们追溯了从两叶和四叶风力涡轮机到今天常见的三叶风力涡轮机的发展历程。我们确定,不是政府资助的风力发电项目和20世纪70 - 80年代的大规模原型发展成为今天的商业涡轮机。相反,小规模的丹麦风力涡轮机,为农业市场开发,发展成为今天的商业涡轮机。我们展示了我们今天所知道的很多关于风力涡轮机设计的知识在20世纪30年代就已经知道了,当然在50年代末就已经广为人知了。这项工作分为两部分:第一部分从第一个发电风力涡轮机到20世纪60年代的发展,第二部分从20世纪70年代开始发展。
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An overview of the history of wind turbine development: Part II–The 1970s onward
We review the development of wind turbines for generating electricity from the late 19th century to the present, summarizing some key characteristics. We trace the move from two and four blade wind turbines to the three blades common today. We establish that it was not the governmental-funded wind programs with its large-scale prototypes of the 1970–80s that developed into the commercial turbines of today. Instead, it was the small-scale Danish wind turbines, developed for an agricultural market, that developed into the commercial turbines of today. And we show that much of what we know today about wind turbine design was known by the 1930s and certainly well known by the late 1950s. This work is divided into two parts: the first part takes up the development from the first electricity producing wind turbines through to the 1960s and a second part on development from the 1970s onward.
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来源期刊
Wind Engineering
Wind Engineering ENERGY & FUELS-
CiteScore
4.00
自引率
13.30%
发文量
81
期刊介绍: Having been in continuous publication since 1977, Wind Engineering is the oldest and most authoritative English language journal devoted entirely to the technology of wind energy. Under the direction of a distinguished editor and editorial board, Wind Engineering appears bimonthly with fully refereed contributions from active figures in the field, book notices, and summaries of the more interesting papers from other sources. Papers are published in Wind Engineering on: the aerodynamics of rotors and blades; machine subsystems and components; design; test programmes; power generation and transmission; measuring and recording techniques; installations and applications; and economic, environmental and legal aspects.
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