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大跨度机库结构风荷载体型系数研究 被引量:3
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作者 裴永忠 石永久 《建筑结构》 CSCD 北大核心 2009年第10期39-42,150,共5页
目前对大跨度机库结构抗风研究尚不深入,而确定合理的风荷载体型系数是结构抗风设计的前提。介绍总结了国内外现行规范对机库类似体型建筑的风荷载体型系数的规定以及近几年来国内三个大型机库风洞试验结果,根据对风洞试验结果的分析和... 目前对大跨度机库结构抗风研究尚不深入,而确定合理的风荷载体型系数是结构抗风设计的前提。介绍总结了国内外现行规范对机库类似体型建筑的风荷载体型系数的规定以及近几年来国内三个大型机库风洞试验结果,根据对风洞试验结果的分析和国内外现行规范规定的总结,提出适用于大跨度机库的体型系数建议值。算例分析表明,建议值能够更加全面准确地反映机库的风压分布特征,使机库抗风设计更加安全合理。 展开更多
关键词 大跨度机库 风荷载规范 风洞试验 风荷载体型系数 内部压力系数
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建筑物不均匀开孔时体型系数的风洞试验研究 被引量:1
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作者 崔欣 李加武 +1 位作者 张宏杰 刘健新 《建筑科学》 北大核心 2007年第11期46-49,共4页
进行了榆林机场航站楼的测压风洞试验,研究了建筑物各墙面存在开孔较大且不均匀时所造成的内部压力改变对建筑物体型系数的影响,并通过与《建筑结构荷载规范》GB50009-2001中关于体型系数、内部压力系数规定的比较,提出了关于风荷载体... 进行了榆林机场航站楼的测压风洞试验,研究了建筑物各墙面存在开孔较大且不均匀时所造成的内部压力改变对建筑物体型系数的影响,并通过与《建筑结构荷载规范》GB50009-2001中关于体型系数、内部压力系数规定的比较,提出了关于风荷载体型系数的几点修订建议。 展开更多
关键词 建筑物 体型系数 风洞试验 内部压力系数
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Interaction between Struts and Swirl Flow in Gas Turbine Exhaust Diffusers 被引量:2
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作者 Roman Z.PIETRASCH Joerg R.SEUME 《Journal of Thermal Science》 SCIE EI CAS CSCD 2005年第4期314-320,共7页
The increasing use of gas turbines in combined cycle power plants together with the high amount of kinetic energy in modem gas turbine exhaust flows focuses attention on the design of gas turbine diffusers as the conn... The increasing use of gas turbines in combined cycle power plants together with the high amount of kinetic energy in modem gas turbine exhaust flows focuses attention on the design of gas turbine diffusers as the connecting part between the Brayton/Joule and the Rankine parts of the combined cycle. A scale model of a typical gas turbine exhaust diffuser is investigated experimentally. The test rig consists of a radial type, variable swirl generator which provides the exhaust flow corresponding to different gas turbine operating conditions. Static pressure measurements are carried out along the outer diffuser walls and along the hub of the annular part and along the centerline of the conical diffuser. Velocity distributions at several axial positions in the annular and conical diffuser have been measured using a Laser Doppler Velocimeter (LDV). Pressure recovery coefficients and velocity profiles are depicted as a function of diffuser length for several combinations of swirl strength, tip flow and strut geometries. The diffuser without struts achieved a higher pressure recovery than the diffuser with struts at all swirl angle settings. The diffuser with cylindrical struts achieved a higher pressure recovery than the diffuser with profiled struts at all swirl angle seO.ings. Inlet flows with swirl angles over 18° affected the pressure recovery negatively for all strut configurations. 展开更多
关键词 gas turbine exhaust diffuser SWIRL STRUTS pressure recovery coefficient.
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