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大型风力发电机组地震载荷计算方法研究
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作者 王其君 高中华 《东方汽轮机》 2016年第4期60-63,78,共5页
随着国家大规模开发风力发电,风力发电机组安全性逐渐受到重视。近年来全国地震时有发生,由于地震很难预测,并且具有很强的破坏性,风力发电机组在地震情况下的安全性必须在设计中考虑。文章介绍了风力发电机组地震设计标准,分析了地震... 随着国家大规模开发风力发电,风力发电机组安全性逐渐受到重视。近年来全国地震时有发生,由于地震很难预测,并且具有很强的破坏性,风力发电机组在地震情况下的安全性必须在设计中考虑。文章介绍了风力发电机组地震设计标准,分析了地震载荷计算原理。最后根据2 MW陆上双馈风力发电机组,分析了地震载荷对风力发电机组各个部件设计的影响,为风力发电机组地震载荷计算提供了参考经验。 展开更多
关键词 风力发电机组 地震设计标准 地震载荷计算原理
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Safety Aspects of Sustainable Storage Dams and Earthquake Safety of Existing Dams 被引量:2
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作者 Martin Wieland 《Engineering》 SCIE EI 2016年第3期325-331,共7页
The basic element in any sustainable dam project is safety, which includes the following safety elements: O structural safety, dam safety monitoring, operational safety and maintenance, and emergency planning. Lon... The basic element in any sustainable dam project is safety, which includes the following safety elements: O structural safety, dam safety monitoring, operational safety and maintenance, and emergency planning. Long-term safety primarily includes the analysis of all hazards affecting the project; that is, hazards from the natural environment, hazards from the man-made environment, and project-specific and site-specific hazards. The special features of the seismic safety of dams are discussed. Large dams were the first structures to be systematically designed against earthquakes, starting in the 1930s. How- ever, the seismic safety of older dams is unknown, as most were designed using seismic design criteria and methods of dynamic analysis that are considered obsolete today. Therefore, we need to reevaluate the seismic safety of existing dams based on current state-of-the-art practices and rehabilitate deficient dams. For large dams, a site-specific seismic hazard analysis is usually recommended. Today, large dams and the safety-relevant elements used for controlling the reservoir after a strong earthquake must be able to withstand the ground motions of a safety evaluation earthquake. The ground motion parameters can be determined either by a probabilistic or a deterministic seismic hazard analysis. During strong earthquakes, inelastic deformations may occur in a dam; therefore, the seismic analysis has to be car- ried out in the time domain. Furthermore, earthquakes create multiple seismic hazards for dams such as ground shaking, fault movements, mass movements, and others. The ground motions needed by the dam engineer are not real earthquake ground motions but models of the ground motion, which allow the safe design of dams. It must also be kept in mind that darn safety evaluations must be carried out several times during the long life of large storage dams. These features are discussed in this paper. 展开更多
关键词 DAMS Earthquake design Earthquake safety Existing dams Design criteria Seismic hazard SUSTAINABILITY Service life
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