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地震加速度动态分布及对高土石坝坝坡抗震稳定的影响
  • 期刊名称:岩土力学,2008,29(4):1072-1076
  • 时间:0
  • 分类:TV641.1[水利工程—水利水电工程] TV435[水利工程—水工结构工程]
  • 作者机构:[1]大连理工大学海岸与近海工程国家重点实验室,辽宁大连116024, [2]国家电力公司昆明勘测设计研究院,云南昆明650051
  • 相关基金:国家自然科学基金雅龙江水电联合基金重点项目(No.50639060).
  • 相关项目:高土石坝变形分析与安全控制
中文摘要:

《水工建筑物抗震设计规范》(DL5073-1997)建议的土石坝地震加速度动态分布系数适合于150m以下的土石坝,而前许多土石坝的设计高度已远大于150m。与低坝相比,高坝受地基刚性的约束减弱,坝体的自振周期延长。在坝体地震反应中,高阶自振周期与地震卓越周期耦合的机率增大,高阶振型的振动易被激发放大,从而导致坝体地震加速度沿坝高的分布与低坝有所不同。据此,采用有限元法研究了高土石坝的加速度分布,提出了高于150m土石坝的地震加速度动态分布系数图示。在此基础上,利用堆石材料的非线性强度准则,对高度超过150m的土石坝坝坡抗震稳定性作了进一步的分析,得出随着坝体地震加速度动态分布系数的降低,坝坡临界破坏的安全系数有所提高。

英文摘要:

The seismic coefficient suggested in the present Specifications for Seismic Design of Hydraulic Structures (DL5073-1997) is suitable for earth-rock dams lower than 150 meters. While at the present time, many earth-rock dams to be constructed are higher than 150 meters. Compared with low dams, high dams get less constraint from stiffness of foundation, and its natural vibrating period becomes prolonged. During the seismic response, high order naturalvibrating period gets more opportunities to coincide with the seismic predominant period, and the vibrations of high orders are easily to be activated and amplified, which result in the seismic acceleration distribution is somewhat different from low dams. With the finite element method, the seismic acceleration distribution of high earth-rock dams is analyzed. The figure of the seismic coefficient of earth-rock dams higher than 150 meters is put forward. Based on the above analysis, further research of the slope seismic stability of earth-rock dams higher than 150m is made. The conclusion is, with the decrease of the seismic coefficient in the dam body, the critical value of safety factor of the dam slope increases.

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