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八宝山断层的变形行为与降雨及地下水的关系

THE CORRELATION OF DEFORMATION BEHAVIOR WITH PRECIPITATION AND GROUNDWATER OF THE BABAOSHAN FAULT IN BEIJING

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【作者】 黄辅琼陈顒白长清张晶晏锐杨明波兰丛欣张晓东江在森

【Author】 Huang Fuqiong Chen Yong Bai Changqing Zhang Jing Yan Rui Yang Mingbo Lan Congxin Zhang Xiaodong Jiang Zaisen Institute of Geophysics . China Earthquake Administration , Beijing 100081. China China Earthquake Vetzvork Center, China Earthquake Administration, Beijing 100036, China China Earthquake Administration , Beijing 100081. China Fengtai Observatory Station, Earthquake Administration of Beijing Municipality . Beijing 100080, China Institute of Earthquake Science . China Earthquake Administration , Beijing 100036 , China Earthquake Administration of Beijing Municipality , Beijing 100080, China

【机构】 中国地震局地球物理研究所中国地震局北京市地震局丰台地震台中国地震局地震预测研究所中国地震台网中心北京市地震局中国地震局地震预测研究所 中国北京 100036 中国地震台网中心 中国北京 100081中国北京 100036中国北京 100080中国北京 100080中国北京 100036

【摘要】 利用北京丰台大灰厂观测台站1970—2003年的长期综合观测资料,系统分析了降雨 和地下水对北京八宝山断层变形行为的影响.研究结果表明:当降雨量持续稳定周期性变 化,则断层孔隙压也呈稳定周期性变化,断层变形行为也表现出明显的规则周期性变化;当 降雨量明显偏低或偏离正常周期性变化,则断层孔隙压周期性消失,断层的变形行为方式也 发生改变,降雨通过改变断层带孔隙压力的变化而影响着八宝山断层的变形行为.结合该断 层已有研究结果,认为降雨和地下水有可能通过改变断层变形行为方式而影响着区域构造应 力/应变场的调整.这一结果将对研究地球浅部流体与固体相互作用提供直接的观测证据.

【Abstract】 We discuss the influence of precipitation and groundwater on the deformation behavior of the Babaoshan fault of Beijing by using long-term observation data from Dahuichang station during 1970-2003. The results show that (1) the pore pressure on fault zone as well as the fault deformation behavior exhibit periodically variation as precipitation changed steadily and periodically; (2) the periodicity of the pore pressure of fault zones disappeared and the manner of fault deformation behavior changes when precipitation was small and/or was in aberrance. This implies that rainfall plays a key role in fault deformation behavior through changing the pore pressure of fault zones. Combining the existing results about the Babaoshan fault, it is concluded that precipitation and groundwater may adjust the stress/strain field by controlling the deformation behavior of the fault, which can provide direct observation evidence for the interaction of fluid and solid in shallow crust of the earth.

【基金】 国家自然科学基会(40374019)和地震科学联合基金(1040106)资助.
  • 【文献出处】 地震学报 ,Acta Seismologica Sinica , 编辑部邮箱 ,2005年06期
  • 【分类号】P315.723
  • 【被引频次】38
  • 【下载频次】270
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