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电测量在中国地震预报中的应用   总被引:25,自引:2,他引:25       下载免费PDF全文
唐山等大地震地电阻率中期下降系压缩应变积累所致 ,为基线缩短、井水位下降所支持。地电阻率、自然电位对起潮力的异常响应及自然电位快急始、慢衰减特殊图象与废油井喷油同步等短临前兆 ,与中期前兆相反显示出向震中迁移的规律 ,表明能量积累从震中向外围传播 ,而能量释放从外围向震中传播。海城地震时喷砂冒水可引起自然电位垂直分量跃变及地光。IIMT法和过剩海洋电流H极化结果表明 ,唐山地震与地壳高阻层及其中存在深大断裂有  相似文献   
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Four types of disturbances in the seasonal variation in georesistivity are presented in the light of specific circumstances in China. As the results of theoretic calculation for the models and in comparison of the calculated results with the seasonal variations observed at 40 georesistivity stations, the following points are found: (1) The seasonal variation in georesistivity is caused by the change in resistivity of the surface layer, especially by the annual variation of phreatic level when the sounding depth is too shallow. This is one of the disturbances and thus has no relation to the origin of earthquake. The feature and amplitude of the seasonal variation depend on the types of disturbance models, geoelectric cross sections and sounding depth. (2) The seasonal variation in georesistivity usually has the same sign as that of the change in resistivity of shallow layer and thus the normal seasonal change appears. However, as far as the K or Q types of geoelectric cross sections are concerned, the abnormal seasonal variation in georesistivity starts to appear with a certain electrode spacing, when the interference layer is located in the first layer. (3) Both abnormal and normal seasonal variations in georesistivity will be smaller than 2% when the sounding depth is greater than 300 m. Therefore, the seasonal variations can be removed or restrained when the location of observation has been properly chosen or the electrode spacing is enlarged enough to obtain a sufficient sounding depth.  相似文献   
3.
结合电测深曲线、 岩性资料建立三维水平层状结构物理模型, 利用有限元法定量计算挖土水坑蓄水量和砖厂建设对兴济N60°W向地电阻率观测的影响。 研究结果显示, 测区内挖土水坑位于影响系数为负的区域, 夏季水位高时为低阻体, 冬季无水时为高阻体, 蓄水量的季节性变化导致N60°W向地电阻率具有冬低夏高的反向年变。 砖厂厂房由砖混结构改建为钢架结构, 位于测区影响系数为负的区域, 局部形成的低阻体引起N60°W测向地电阻率的趋势上升变化。  相似文献   
4.
河北兴济台地电阻率年变特征分析   总被引:1,自引:0,他引:1       下载免费PDF全文
基于电测深曲线反演结果,利用地电阻率转换函数的递推公式定量模拟分析了地下水位对兴济台地电阻率的影响。结果表明,地下水位下降会造成地电阻率上升,这与兴济台N30°E向的地电阻率观测结果相符;N60°W向的地电阻率的趋势变化与N30°E向的相反,且年变幅较大,这是由于测区供电极和测量极之间存在因取土而积水成坑这个局部异常体引起的。  相似文献   
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