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square engineering
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  广场工程
     In this paper, the static analysis, modal analysis, seismic accelerate response spectrum analysis and elastic dynamic time-history analysis of Zhixin square engineering are performed by using the FEA software of ANSYS. This engineering is located in Jing'an district of Shanghai.
     本论文通过有限元分析软件ANSYS对上海市静安区置信广场工程进行了结构静力分析、模态分析、地震加速度反应谱分析和弹性动力时程分析。
短句来源
     The Zhixin square engineering includes a tall building of 32 stories and the structure type of this building is frame-corewall structure.
     置信广场工程由一幢32层的高层建筑组成,其结构形式为框架—核心筒结构。
短句来源
     Combined with Nanjing New Gentry Square Engineering, experimental study on the behaviours of pre-stressed high strength concrete truss transfer storey structure are carried out. Based on the test results and analysis, the design proposals of prestressed concrete transfer truss are presented, which can provide reliable experimental verifications for design and wide applications of truss tramsfer storey structure.
     结合南京新世纪广场工程对高强砼预应力桁架转换层结构的性能进行了试验研究,在试验分析的基础上,提出了预应力砼转换桁架的设计建议,为桁架转换层结构的设计和推广应用提供了可靠的实验依据.
短句来源
  “square engineering”译为未确定词的双语例句
     Dredge cutting drainage technique in Jinan Quancheng Square engineering
     济南泉城广场工程疏导法排水技术
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  相似匹配句对
     On Engineering
     论工程
短句来源
     The foundation engineering of Shengshihaoli Square is investigated on technique and ecnomy.
     本文对圣世豪林广场基础工程冬期施工的技术和经济方面进行了较详细的调研分析。
短句来源
     Enclosure Design for the Foundation Pit Engineering of Zhengda Square
     正大广场基坑围护设计
短句来源
     ELECnUCAL ENGINEERING
     电气工程
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     Mother Square
     母亲广场
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It is a rather ideal scheme to use a giant trues seldom met with at home and abred as trans-fer sthecrure in suporhigh-rare building.In Nanjing New Centry Square engineering, the princioalbuilding with 52 floors and 254 m height adopts prestress high strength Concrete giant truss transferstructure with 7 m height in 17 th floor.As the giant truss bears giant load,it is necessary to carry outthe systematic analysis and experimental research in desigh and configuration.Based on optical elastic experiment,the...

It is a rather ideal scheme to use a giant trues seldom met with at home and abred as trans-fer sthecrure in suporhigh-rare building.In Nanjing New Centry Square engineering, the princioalbuilding with 52 floors and 254 m height adopts prestress high strength Concrete giant truss transferstructure with 7 m height in 17 th floor.As the giant truss bears giant load,it is necessary to carry outthe systematic analysis and experimental research in desigh and configuration.Based on optical elastic experiment,the alw of stress distribution,the degree of stres concentration and its zone distributionand so on are found out,especially the charactere different from traditional concept.The test resultsare checked by usingg simple finite element analysis,then very useful conclusioris are obtained, whichprovide important basis for later experiment and design.

在超高层建筑中,采用国内外鲜见的巨型桁架作为转换层是十分理想的方案,主楼52层、高254m的南京“新世纪广场”,自第七层起采用高7m的预应力高强砍巨型析架转换层,固荷载巨大,在设计与构造方面须进行系统的分析和试验研究,本文利用光弹性法研究了应力分布规律,应力集中程度及其区域分布等,特别是与传统概念不一致的特点,对此,又用简单的有限元分析予以检验,得出了十分有益的结论,为后续试验及设计提供了重要依据。

Combined with Nanjing New Gentry Square Engineering, experimental study on the behaviours of pre-stressed high strength concrete truss transfer storey structure are carried out. Based on the test results and analysis, the design proposals of prestressed concrete transfer truss are presented, which can provide reliable experimental verifications for design and wide applications of truss tramsfer storey structure.

结合南京新世纪广场工程对高强砼预应力桁架转换层结构的性能进行了试验研究,在试验分析的基础上,提出了预应力砼转换桁架的设计建议,为桁架转换层结构的设计和推广应用提供了可靠的实验依据.

The drainage of Jinan Quancheng Square engineering faces such difficulties as foundation pit with large area, complicated geologic condition, high underground water level, and numerous spring head with irregular distribution, etc. The traditional drainage method isn′t practical. Drainage cutting combined with weeper drain could quickly dewater to the designed water level.

济南市泉城广场工程排水有其显著的特点:基坑面积大,地质条件复杂,地下水位高,泉眼众多,非常不规则,采用传统作法难以奏效。用疏导法排水与盲沟排水相结合的技术措施,能快捷有效地把泉水降至设计标高以下。

 
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