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几何初缺陷铁磁梁式板磁弹塑性屈曲失稳的摄动分析
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作者 高原文 周又和 郑晓静 《兰州大学学报(自然科学版)》 CAS CSCD 北大核心 2004年第5期21-25,共5页
基于广义变分原理得到的磁力公式,采用磁场摄动技术,给出了横向磁场作用下铁磁梁式板的磁力摄动表达式。在此基础上研究了横向均匀磁场下,具有几何初缺陷铁磁梁式板的磁弹塑性静力屈曲失稳特征,探讨了塑性变形对铁磁梁式板的失稳临界磁... 基于广义变分原理得到的磁力公式,采用磁场摄动技术,给出了横向磁场作用下铁磁梁式板的磁力摄动表达式。在此基础上研究了横向均匀磁场下,具有几何初缺陷铁磁梁式板的磁弹塑性静力屈曲失稳特征,探讨了塑性变形对铁磁梁式板的失稳临界磁场值等力学特征的影响。分析结果表明:塑性变形对铁磁梁式板屈曲失稳临界磁场是敏感的,几何初缺陷对结构的变形特征具有很大影响。 展开更多
关键词 磁场摄动 几何初缺陷 铁磁梁式板 弹塑性屈曲失稳
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Evaluation of survival stow position and stability analysis for heliostat under strong wind 被引量:1
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作者 冯煜 陈小安 单文桃 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第11期3006-3017,共12页
Heliostats are sensitive to the wind load, thus as a key indicator, the study on the static and dynamic stability bearing capacity for heliostats is very important. In this work, a numerical wind tunnel was establishe... Heliostats are sensitive to the wind load, thus as a key indicator, the study on the static and dynamic stability bearing capacity for heliostats is very important. In this work, a numerical wind tunnel was established to calculate the wind load coefficients in various survival stow positions. In order to explore the best survival stow position for the heliostat under the strong wind, eigenvalue buckling analysis method was introduced to predict the critical wind load theoretically. Considering the impact of the nonlinearity and initial geometrical imperfection, the nonlinear post-buckling behaviors of the heliostat were investigated by load-displacement curves in the full equilibrium process. Eventually, combining B-R criterion with equivalent displacement principle the dynamic critical wind speed and load amplitude coefficient were evaluated. The results show that the determination for the best survival stow position is too hasty just by the wind load coefficients. The geometric nonlinearity has a great effect on the stability bearing capacity of the heliostat, while the effects of the material nonlinearity and initial geometrical imperfection are relatively small. And the heliostat is insensitive to the initial geometrical imperfection. In addition, the heliostat has the highest safety factor for wind-resistant performance in the stow position of 90-90 which can be taken as the best survival stow position. In this case, the extreme survival wind speeds for the static and dynamic stability are 150 m/s and 36 m/s, respectively. 展开更多
关键词 HELIOSTAT survival stow position stability bearing capacity strong wind
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