建筑专业毕业设计外文翻译--世界第一高楼的地震分析
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1、外文资料翻译 Contents lists available at ScienceDirect Journal of Constructional Steel Research Seismic analysis of the worlds tallest building Hong Fan a,b, Q . S . Li a, A l e x Y . T u a n c, Lihua Xud a Department of Building and Construction, CityUniversity of Hong kong, Hong kong b China Nuclear Pow
2、er Design Company, Shenzhen 518026, China c Department of Civil Engineering, Tam kangUniversity, Taipei, Taiwan d School of Civil Engineering, Wuhan University, HubeiWuhan 430072, China a r t i c l e i n f o Article history:Received 13 March 2008Accepted 8 October 2008 keywords:Super-tall buildingMe
3、ga-frame structureFinite element modelingSeismic analysisDynamics response Shaking table test a b s t r a c t Taipei 101 (officially known as the TaipeiFinancialCenter) with 101stories and 508 m height, located inTaipei where earthquakes andstro -ng typhoons are common occurrences, is currently the
4、tallestbuildingin the world. The great height of the building , the specialgeog- raphic an -d environmental conditions, notsurprisingly, presented one of the gre -atest challenges for structural engineers. In particular, its dynamicpe -rformance under earthquake or wind actions requiresinte- nsive r
5、esearc -h. The structure of the buildingis a mega-frame system composed of concrete filled steel tube (CFT) columns, steel brace core and belttrus -ses which are combined to resist vertical and lateral loads. In this stud -y, a shaking table test wasconducted to determine t he con- stitutive rel- at
6、ionships and finite element types for the CFT columnsa - nd steel mem -bers for establishing the finite element (FE) model of the tall building. Then, the seismicresponses of the super -tall building we- re numerically investigated. An earthquake spectrum generatedfor Ta -ipeiBasin was a -dopted to
7、calculate the lateral displacements and distributions of inter -ior columnforces. Furthermore, time -history an- alyses of elastic and in -elastic seismic response were carried outusing scale d accelerograms representing earthquake events with return perio - ds of 50-year, 100-year,and 950-year, res
8、pectively. The computational results indicate that the super-tall building with the megaframe system possesses substantial re -serve strength, and the high-rise structure wo- uld satisfy the designre- quirements under severe seismic events. The output of this study is ex -pected to be ofconsiderable
9、interest and practical use to profession -nals and researchers involved in the design of super-tall buildings. 1. Introduction Owing to the growing use of high-strength materials and advanced co- nstruction techniques, building structures have becomemore and more flexible and taller. The increasing
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