用有限差分程序进行边坡动力学建模

S. Dhakal
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引用次数: 2

摘要

利用有限差分程序FLAC对边坡进行动力模拟,研究了边坡几何形状、地震输入信号(主要是波的频率)和材料特性与表面振动放大的关系。同时,研究了不同输入频率对系统性能的影响。较高的斜率被较低的输入频率放大,而较小的斜率则相反。当输入信号频率越高、坡高越低时,整体放大幅度最大。当输入频率为15 Hz的信号时,对于20 m高的普通石灰岩边坡,水平放大可达17倍(水平加速度约为1.7g)。实验表明,在剪切模量极低的情况下,剪切模量大多衰减而不是放大,在剪切模量极高的情况下,与中间剪切模量的一定范围相比,剪切模量的放大可以忽略不计。当坡高为40 m时,剪切模量为3000 MPa,最大放大幅度为6.5(水平加速度为0.66g) doi: 10.3126/ bdge .v12i0.2253地质部门通报,2009年第12卷,第88-94页
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Dynamic modelling in slopes using finite difference program
The finite difference program FLAC is used for dynamic modelling of slopes whereby the relationship of the slope geometry, earthquake input signals (mainly frequency of the wave) and the material properties with amplification of vibration on the surface are investigated. At the same time, the influence of varying input frequencies is also investigated. The higher slopes were amplified most by the lower input frequency whereas the reverse was true for the smaller slopes. The overall magnitude of the amplification was maximum with input signals of higher frequency and lower slope heights. The horizontal amplification as much as 17 (horizontal acceleration in the order of 1.7g) was obtained for the normal limestone slope with 20 m height when an input signal of 15 Hz frequency was applied. This experiment revealed that for extremely lower values of shear modulus, there was mostly attenuation instead of amplification and for extremely high values of shear modulus, amplification was negligible as compared to the certain range of intermediate shear modulus. Maximum amplification in the order of 6.5 (horizontal acceleration of 0.66g) was achieved for the shear modulus of 3000 MPa where slope height was of 40 m. doi: 10.3126/bdg.v12i0.2253 Bulletin of the Department of Geology, Vol. 12, 2009, pp. 88-94
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