周乾, 闫维明, 纪金豹. 地震作用下浮放文物滑移及摇晃响应仿真[J]. 华北地震科学, 2016, 34(1): 13-20. DOI: 10.3969/j.issn.1003-1375.2016.01.003
引用本文: 周乾, 闫维明, 纪金豹. 地震作用下浮放文物滑移及摇晃响应仿真[J]. 华北地震科学, 2016, 34(1): 13-20. DOI: 10.3969/j.issn.1003-1375.2016.01.003
ZHOU Qian, YAN Wei-ming, JI Jin-bao. Simulation of Oscillation and Sliding Responses of Free-standing Cultural Relics under Earthquakes[J]. North China Earthquake Sciences, 2016, 34(1): 13-20. DOI: 10.3969/j.issn.1003-1375.2016.01.003
Citation: ZHOU Qian, YAN Wei-ming, JI Jin-bao. Simulation of Oscillation and Sliding Responses of Free-standing Cultural Relics under Earthquakes[J]. North China Earthquake Sciences, 2016, 34(1): 13-20. DOI: 10.3969/j.issn.1003-1375.2016.01.003

地震作用下浮放文物滑移及摇晃响应仿真

Simulation of Oscillation and Sliding Responses of Free-standing Cultural Relics under Earthquakes

  • 摘要: 为保护文物,基于Simulink仿真技术,以博物馆浮放文物为研究对象,研究了地震作用下文物的摇晃和滑移响应。假设文物形状为矩形,讨论了文物产生滑移和摇晃的条件,推导了地震作用下文物的运动方程,考虑不同参数的影响,分析了文物滑移及摇晃的位移、速度及加速度响应曲线,获得了不同条件下文物产生不同运动的参数变化规律。结果表明:浮放文物在地震作用下,产生摇晃的条件与文物宽高比B/H、地震波强度及物体与地面的摩擦系数密切相关;地震作用下,浮放体的摇晃响应对初始参数很敏感,且浮放体B/H越小、地震波强度越大,摇晃越严重。浮放文物产生水平滑移的条件与地震加速度峰值及文物与台座的摩擦系数密切相关;文物的水平滑移响应随着输入地震波加速度峰值增大而增大,随着摩擦系数增大有减小趋势。此外,Simulink技术可有效模拟浮放文物在地震作用下的摇晃响应,因而是一种切实可行的仿真分析方法。

     

    Abstract: To protect free-standing cultural relics, we simulated their sliding and oscillation responses under earthquakes using Simulink simulation technique. By hypothesis that the shape of cultural relics was rectangle, their sliding and oscillation conditions under earthquakes were analyzed. Firstly, their motion equations were deduced. Then their Simulink models were built. By simulation analysis, their response curves of displacement, velocity and acceleration were obtained. Finally, parameters such as friction ratio between the relic and its base, peak earthquake acceleration values, ratio of width of the relic against its height(B/H) and so on were discussed. Results show that oscillation responses of the relic are sensitive to initial conditions. Oscillation conditions of the relic relates closely to B/H, earthquake intensity and friction coefficient between object and its base. The responses become more serious with less B/H or larger earthquake intensity values. Sliding motion of the cultural relic relates mainly to the friction ratio and earthquake strength. Its sliding response is more obvious with the increase of earthquake strength and decrease of friction ratio. Besides, Simulink can effectively simulate sliding and oscillation responses of free-standing objects under earthquakes, which proves that the technique is useful.

     

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