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底层层高较高双层厂房结构选型与分析——以临港泥城产业区创造园项目为例
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作者 李朋主 《中外建筑》 2015年第8期150-153,共4页
文章结合具体的工程实例,对一类底层层高较高且上下两层层高差异较大的双层厂房做了结构选型和经济性对比分析,综合来说,此类工程选用屈曲约束支撑结构体系较优。
关键词 层高差异较大 结构选型 屈曲约束支撑
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屈曲约束支撑在侧向刚度不规则结构中的应用
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作者 陈志伟 林滟 《建筑技术开发》 2019年第1期12-13,共2页
介绍了因结构层高差异较大导致侧向刚度不规则的工程设计难点,综合对比混凝土框架结构、框架–剪力墙结构、框架–普通钢支撑结构及框架–屈曲约束支撑结构对于此类工程的应用特点。对比结果表明框架–屈曲约束支撑结构适用此类工程。... 介绍了因结构层高差异较大导致侧向刚度不规则的工程设计难点,综合对比混凝土框架结构、框架–剪力墙结构、框架–普通钢支撑结构及框架–屈曲约束支撑结构对于此类工程的应用特点。对比结果表明框架–屈曲约束支撑结构适用此类工程。对框架–屈曲约束支撑结构进行模拟计算,分析侧向刚度及抗剪承载力计算结果,均满足规范要求。实现了框架–屈曲约束支撑结构体系从概念设计到模拟计算的过程。 展开更多
关键词 层高差异 侧向刚度不规则 屈曲约束支撑
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A three-equation turbulence model for high-speed flows 被引量:1
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作者 LIU JingYuan 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第4期803-811,共9页
Adding a new equation to the two-equation K-turbulence model framework,this paper proposed a three-equation turbulence model to determine the density variance for high-speed aero-optics and high-speed compressible tur... Adding a new equation to the two-equation K-turbulence model framework,this paper proposed a three-equation turbulence model to determine the density variance for high-speed aero-optics and high-speed compressible turbulent flows.Simulations were performed with the new model for supersonic and hypersonic flat-plate turbulent boundary layer and hypersonic ramp flows.The results showed that the prediction with the present model agrees well with the experimental data and is significantly better than the Lutz's model in predicting the density variance for the flat-plate flows.Furthermore,the present model can produce more accurate skin pressure and skin heat flux distributions than the original K-model in simulating hypersonic compression ramp flows with separation and reattachment and shock/boundary layer interactions.Without introducing a variety of ad hoc wall damping and wall-reflection terms,the proposed three-equation turbulence model is applicable to highspeed aero-optics and turbulent flows of real vehicles of complex configuration. 展开更多
关键词 high speed turbulence model density variance AERO-OPTICS numerical simulation heat flux SEPARATION
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