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高邮台地电阻率日均值分析
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作者 王福才 张骞 +4 位作者 蒋延林 赵卫红 刘广宽 薛家富 赵峰 《大地测量与地球动力学》 CSCD 2003年第4期129-132,共4页
应用地电学的差分能量法 ,对高邮台地电阻率日均值进行处理分析。结果表明 ,差分能量法对抑制较长周期变化、突出异常信息十分有效 ,特别对突升、突降急剧变化的短临异常有着明显的指标反应。这可能反映了地壳介质应力变化过程中较高频... 应用地电学的差分能量法 ,对高邮台地电阻率日均值进行处理分析。结果表明 ,差分能量法对抑制较长周期变化、突出异常信息十分有效 ,特别对突升、突降急剧变化的短临异常有着明显的指标反应。这可能反映了地壳介质应力变化过程中较高频的扰动。在观测系统和观测环境正常的情况下 ,若用差分能量法处理的 ρs 日均值出现一阶差分能量的对数大于零 ,应视为震兆异常。 展开更多
关键词 高邮台 地电阻率 差分能量法 地震前兆 日均值分析
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Influences of nonassociated flow rules on three-dimensional seismic stability of loaded slopes 被引量:3
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作者 N.GANJIAN F.ASKARI O.FARZANEH 《Journal of Central South University》 SCIE EI CAS 2010年第3期603-611,共9页
The influences of soil dilatancy angle on three-dimensional (3D) seismic stability of locally-loaded slopes in nonassociated flow rule materials were investigated using a new rotational collapse mechanism and quasi-... The influences of soil dilatancy angle on three-dimensional (3D) seismic stability of locally-loaded slopes in nonassociated flow rule materials were investigated using a new rotational collapse mechanism and quasi-static coefficient concept. Extended Bishop method and Boussinesq theorem were employed to establish the stress distribution along the rupture surfaces that are required to obtain the rate of internal energy dissipation for the nonassociated flow rule materials in rotational collapse mechanisms. Good agreement was observed by comparing the current results with those obtained using the translational or rotational mechanisms and numerical finite difference method. The results indicate that the seismic stability of slopes reduces by decreasing the dilatancy angle for nonassociated flow rule materials. The amount of the mentioned decrease is more significant in the case of mild slopes in frictional soils. A nearly infinite slope under local loading, whether its critical failure surface is 2D or 3D, not only depends on the magnitude of the external load, but also depends on the dilataney angle of soil and the coefficient of seismic load. 展开更多
关键词 3D slope stability failure analysis nonassociated flow rule
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