首页> 外文期刊>Journal of vibration and control: JVC >Experimental and analytical investigation on the in-plane dynamic instability of arches owing to parametric resonance
【24h】

Experimental and analytical investigation on the in-plane dynamic instability of arches owing to parametric resonance

机译:参数共振的平面内动态不稳定性的实验分析研究

获取原文
获取原文并翻译 | 示例
           

摘要

When an arch is subjected to a periodic load, it may lose in-plane stability dynamically owing to parametric resonance. Previous investigations have been concentrated on in-plane dynamic buckling of pin-ended shallow arches. However, in engineering practice, fixed arches with different rise-to-span ratios are often encountered. Little research on in-plane dynamic instability of deep fixed arches has been reported in the literature. This paper is concerned with experimental and analytical investigations for in-plane dynamic instability of fixed circular arches with rise-to-span ratios 1/8–1/2 under a central periodic load owing to parametric resonance. Experiments are carried out to determine the in-plane frequency and damping ratio of arches, to investigate critical regions of frequencies and amplitudes of the periodic load for in-plane dynamic instability of arches, and to explore effects of the rise-to-span ratio and additional weights on dynamic instability. The analytical method for determining the region of excitation frequencies and amplitudes of the periodic load causing in-plane instability of the arch is established using the Hamilton’s principle by accounting for effects of additional concentrated weights. Comparisons of analytical solutions with test results show that they agree with each other quite well. These results show that the rise-to-span ratio significantly influences the bandwidth of regions of critical excitation frequencies for in-plane dynamic instability of arches. The critical frequencies of the periodic load and their bandwidth increase with a decrease of the rise–span ratio of the arch, whereas the corresponding amplitude of the periodic load decreases at the same time. It is also found that the central concentrated weight influences in-plane dynamic instability of arches significantly. As the weight increases, the critical frequencies of excitation and their bandwidth for in-plane dynamic instability of arches decreases, whereas the c
机译:当拱门经过周期性负载时,由于参数谐振,它可能会动态地丢失面内稳定性。先前的调查集中在平面内的浅拱门的平面动态屈曲。然而,在工程学实践中,通常遇到具有不同跨跨度比率的固定拱门。在文献中报道了对深固定拱门的平面内动态不稳定的研究。本文涉及由于参数谐振,在中央周期性负载下,在中央周期性负载下具有固定圆形拱的固定圆形拱的面内动态不稳定性的实验和分析研究。进行实验以确定拱门的面内频率和阻尼比,研究拱门内部动态不稳定性的周期性频率和周期负荷的临界区域,探讨跨越跨度比的突出区和动态不稳定的额外重量。通过占额外集中重量的影响,建立了汉密尔顿原则建立了导致拱门面内载荷的激发频率和周期负荷幅度的分析方法。具有测试结果的分析解决方案的比较表明,它们相应彼此一致。这些结果表明,上升跨度比率显着影响拱门面内动态不稳定性的临界激励频率区域的带宽。周期性负载的临界频率及其带宽随着拱起的上升比率的降低而增加,而周期性负载的相应幅度同时降低。还发现中央集中重量显着影响拱门的面内动态不稳定性。随着重量增加,激励的临界频率及其带宽对于拱门的平面内部动态不稳定性降低,而C

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号