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堤坝和基础非线性动力失稳灾变的分岔突变分析

Bifurcation and catastrophe analysis of non-linear dynamic instability disaster for dam and foundation system

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【作者】 张我华邱战洪陈合龙

【Author】 ZHANG Wo-hua~1,QIU Zhan-hong~(1,2),CHEN He-long~2(1.Institute of Geotechnical Engineering,Zhejiang University,Hangzhou 310027, China;2.Architecture and Civil Engineering College,Taizhou University,Taizhou 317000,China)

【机构】 浙江大学岩土工程研究所浙江大学岩土工程研究所 浙江杭州310027浙江杭州310027台州学院建筑工程系浙江台州317000

【摘要】 为了更深刻本质地研究堤坝系统发生动力溃坝灾害的机理,应用非保守系统拉格朗日动力学理论建立了堤坝-基础系统在地震荷载作用下3个自由度的非线性动力学模型,它描述了堤坝-基础系统在地震荷载作用下的横向振动、竖向振动和基础振动的非线性特征.在此基础上,对由振幅、作用力和激振频率所表示的相空间中动力系统在简谐激励作用下共振响应表现出的畸变、折叠、突跳和滞后等现象,以及对在范德玻尔轨迹平面上系统稳定性分岔的特征和共振峰畸变突跳现象的机理,以及分频过程的亚谐振的现象进行了研究,从不同角度对非线性动力系统给出了双(或单)尖点突变模型,描述了由堤坝-基础结构中非线性因素演化造成系统稳定性分岔所导致的系统振幅平方A21失稳突跳抖动,使堤坝系统的动能(或动量)发生突然的改变,从而在系统内产生了很大的冲击应力的灾变机理.

【Abstract】 In order to explain the paroxysmal disaster mechanism of dam system in dynamic debacle more constitutionally and profoundly,a nonlinear dynamic model with three degrees of freedom was constructed to express nonlinear characters of horizontal and vertical vibrations of the dam body and earthquake with the foundation based on Lagrange dynamic equations under seismic load from unconservative energy analysis of the system.The phenomena of distortion,folding,jumping and lagging in resonance with the dynamic system under harmonic excitation were taken into account by observation in the phase space,which consists of the vibration amplitude,the force and frequency of the excitation.The characters of stability bifurcation,the mechanism of distortion and the catastrophe of the resonance peak as well as the behavior of inferior harmonic vibration were expressed on the phase plane of van der Pol’s orbits.Dynamic catastrophe models of the dam-foundation system with both double and single cusps were presented from different points of view,describing the stability bifurcation of the dynamic system due to the variation of nonlinear factors and causes instable sudden square amplitude A21,tingles and may suddeny change the kinetic energy or kinetic moment of the system to produce very high shock stress.

【基金】 国家自然科学基金资助项目(50379046);教育部博士点基金资助项目(A50221)
  • 【文献出处】 浙江大学学报(工学版) ,Journal of Zhejiang University(Engineering Science) , 编辑部邮箱 ,2007年01期
  • 【分类号】TV223.31
  • 【被引频次】7
  • 【下载频次】268
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