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RELIABILITY OF MACHINE ELEMENTS IN WIND TURBINES

机译:风力发电机组中机械元件的可靠性

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Worldwide electrical energy production generated by wind turbines grows at a rate of 30 percent. This doubles the total production every three years. At the same time the power of individual stations goes up by 20 percent annually. Whereas today the towers, rotors and drive trains have to handle 5 MW, in about six to eight years they might produce up to fifteen MW. As a consequence, enormous pressure is put on the wind turbine manufacturers, the component suppliers and the operators. And because prototype and field testing is limited by its expense, the design of new turbines demands thorough analysis and simulation. Looking at the critical components of a wind turbine this paper describes advanced design tools which help to anticipate failures, but also assists in optimizing reliability and service life. Development of the software tools has been supported by research activities in many universities.
机译:风力涡轮机产生的全球电能产量以30%的速度增长。这使每三年的总产量翻倍。同时,各个站点的功率每年增加20%。如今,塔,转子和传动系统必须处理5兆瓦,而在大约六到八年的时间里,它们可能会产生十五兆瓦的功率。结果,给风力涡轮机制造商,部件供应商和运营商带来巨大压力。而且由于原型和现场测试受到其费用的限制,因此新型涡轮机的设计需要进行全面的分析和仿真。本文着眼于风力涡轮机的关键组件,介绍了先进的设计工具,这些工具可帮助您预测故障,同时也有助于优化可靠性和使用寿命。许多大学的研究活动为软件工具的开发提供了支持。

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