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张拉整体索穹顶结构的预应力优化设计
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作者 李红果 张爱国 《吉林师范学院学报》 1999年第5期35-39,43,共6页
空间张拉索穹顶整体结构是一类有无穷小机构位移的静不定且动不定结构,需要提供预应力完成几何整体性的构造.本文通过对预应力空间铰接体系的设计分析,提出了包括索和压杆的预应力优化设计方法,此方法是基于矩阵分析的柔性方法,它... 空间张拉索穹顶整体结构是一类有无穷小机构位移的静不定且动不定结构,需要提供预应力完成几何整体性的构造.本文通过对预应力空间铰接体系的设计分析,提出了包括索和压杆的预应力优化设计方法,此方法是基于矩阵分析的柔性方法,它能够找到预应力和机构的状态且优化受压构件的预应力设计. 展开更多
关键词 张拉整体索穹顶结构 静不定 动不定 预应力优化设计
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某弦支穹顶结构预应力设计及稳定性分析 被引量:1
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作者 乔帅斌 《甘肃科技》 2022年第22期8-11,共4页
弦支穹顶结构为刚柔组合结构,为了探究预应力对其受力性能的影响及结构极限承载力的控制因素,以兰州新区某游乐园屋盖弦支穹顶结构为研究对象,屋盖平面形状呈椭圆形,短向跨度62 m,长向跨度72 m,高度4.5m。依据支座反力最小为原则经过优... 弦支穹顶结构为刚柔组合结构,为了探究预应力对其受力性能的影响及结构极限承载力的控制因素,以兰州新区某游乐园屋盖弦支穹顶结构为研究对象,屋盖平面形状呈椭圆形,短向跨度62 m,长向跨度72 m,高度4.5m。依据支座反力最小为原则经过优化分析得到一组初始预应力,采用降温法模拟预应力并对弦支穹顶的整体刚度、构件强度进行计算,同时采用ANSYS软件考虑结构初始缺陷、二阶P-Δ效应和钢材的弹塑性非线性性能对弦支穹顶的全过程工作性能进行跟踪分析。研究结果表明索承体系及预应力的引入可大大减小结构支座反力,同时可显著降低上弦杆件应力峰值和结构竖向位移,结构的极限承载力由强度控制,结构具有较好的塑性内力重分布特点。 展开更多
关键词 弦支穹顶 预应力优化设计 降温法 稳定分析
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Optimization design of prestressed concrete wind-turbine tower 被引量:7
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作者 MA HongWang MENG Ran 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第2期414-422,共9页
Wind energy is a clean and renewable energy for which technology has developed rapidly in recent years.Wind turbines are commonly supported on tubular steel towers.As the turbine size is growing and the towers are ris... Wind energy is a clean and renewable energy for which technology has developed rapidly in recent years.Wind turbines are commonly supported on tubular steel towers.As the turbine size is growing and the towers are rising in height,steel towers are required to be sufficiently strong and stiff,consequently leading to high construction costs.To tackle this problem,a new type of prestressed concrete tower was designed employing a novel tower concept having a regular octagon cross section with interior ribs on each side,which was optimized by comparing the natural frequency and stress difference under the same lateral load in different directions of the tower.The designed tower features a tapered profile that reduces the area subjected to wind;the tapered profile reduces the total weight,applied moment and the capital cost.An optimization method was developed employing ABAQUS software and a genetic algorithm.A target function was defined on the basis of the minimum cost of the concrete and prestressed tendon used,and constraints were applied by accounting for the stress,displacements and natural frequency of the tower.Employing the method,a 100 m prestressed concrete tower system for a 5 MW turbine was optimized and designed under wind and earthquake loads.The paper also reports a systematic design procedure incorporating the finite element method and the optimization method for the prestressed concrete wind-turbine towers. 展开更多
关键词 prestressed concrete wind-turbine tower OPTIMIZATION finite element method genetic algorithm
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