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ID:34594729
大小:3.63 MB
页数:58页
时间:2019-03-08
《计及微振磨损及风雨荷载的输电线可靠性建模和评估》由会员上传分享,免费在线阅读,更多相关内容在教育资源-天天文库。
1、重庆大学硕士学位论文英文摘要broken.Inthispaper,thewindloadsmodelissolvedaccordingtothedesignstandardsoftransmissionlines,therainloadsmodelissolvedaccordingtotheraindropsmodelandconservationofenergy.Combinedwithstructuralreliabilitytheory,thetime-dependentfailurepro
2、babilitymodeloftransmissionlinesisestablishedundertheimpactofstrongwindandrain.Theexampleshows:theheavyrainfallnotonlytriggersgeologicaldisastersandaffectthesafetyofthetowerfoundation,butalsohassomeimpactforlinesstructuralstrength.Theinfluenceoffretti
3、ngtolinesstructuralreliabilityislong-termaccumulation,andtheinfluencestrongwindandraintolinesstructuralreliabilityisshort-termimpact.Inthispaper,thetime-dependentreliabilitymodeloftransmissionlineswithlong-termfrettingisestablishedandthepowersystemrel
4、iabilityisassessedundertheimpactofstrongwindandrain.Theexampleshows:thefrettingissensitivetothelinesreliabilityundertheimpactofstrongwindandrain;rainloadscannotbeignoredunderthecombinedeffectofwindandrainloads.Keywords:Transmissionlines,Fretting,Winda
5、ndrainloads,Time-dependentreliabilitymodel,Short-termreliabilityassessmentIII重庆大学硕士学位论文目录目录中文摘要..........................................................................................................................................I英文摘要.............
6、...........................................................................................................................II1.绪论..........................................................................................................................
7、............11.1.课题的研究背景及意义.........................................................................................................11.2.国内外研究现状...........................................................................................................
8、..........11.2.1.输电线微振磨损的研究现状...........................................................................................11.2.2.强风雨对电网影响的研究现状.......................................................................................41.2.3.天气因素对电网短期
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