地球物理参数动态与地球环境应力-应变状态关系的估计

Pub Date : 2020-06-20 DOI:10.5800/gt-2020-11-2-0479
V. Bragin, L. Sverdlik
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引用次数: 2

摘要

RAS研究站于20世纪80年代开始在比什凯克地球动力学试验区(BGTA)进行地球动力学研究。这个试验区位于天山北部,是中亚地震最活跃的地区之一。用地球物理、地震学和大地测量的综合方法研究了地壳形变的时空分布规律。长偏移瞬变电磁(LOTEM)技术是BGTA地球物理研究的重要组成部分,其重点是地震活动动力学预测。LOTEM被认为是获取多层导电各向异性地质环境数据信息量最大的方法之一。本文介绍了Ak-Suu和Shavai永久电磁监测站记录的LOTEM测深数据的综合解释结果。分析了2016年1月至2018年10月研究区比电阻时间序列与地质环境应力-应变状态和地震过程的相关性。建立了发生在8.0 km以上深度的变形过程在比电阻时间序列中以海湾型负变化的形式反映出来。当测量单元的接收偶极子沿子午线(N-S)方向排列时,观察到视电阻减小。潜水方向的压缩期与地震活动最密集的时期相吻合。震源位置与地形起伏和区域断层资料的对比显示,震源密度最大的位置在天山北脊的轴向部分。
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ESTIMATES OF RELATIONSHIP BETWEEN THE DYNAMICS OF GEOPHYSICAL PARAMETERS AND THE STRESS-STRAIN STATE OF GEOENVIRONMENT
The RAS Research Station started geodynamical research at the Bishkek Geodynamic Test Area (BGTA) in 1980s. This test area is located in the Northern Tien Shan, one of most seismically active zones of Central Asia. The distribution patterns of crustal deformation in space and time are investigated by a complex of geophysical, seismological and geodesic methods. Long-offset transient electromagnetic (LOTEM) technique is an important component of the geophysical research carried out at BGTA with the focus on forecasting of seismic activity dynamics. LOTEM is considered to be one of the most informative methods for obtaining data on multilayered conductive anisotropic geologic environment. This article presents the results of integrated interpretation of LOTEM sounding data recorded at permanent electromagnetic monitoring stations, Ak-Suu and Shavai. The time series of specific electrical resistance are analyzed to reveal a correlation with the stress-strain state of the geologic environment and seismic process in the study region in the period from January 2016 to October 2018. It is established that the deformation process taking place at a depth of more than 8.0 km is reflected in the time series of specific electrical resistance in the form of bay-shaped negative variations. A decrease of apparent resistance is observed when the receiver dipoles of the measurement unit are arranged in the meridian (N-S) direction. The periods of compression in the submeridional direction coincide with the periods with the highest density of seismic events. A comparison of earthquake hypocenter locations against the topographic relief and the data on regional faults shows the maximum density of hypocenters at the axial parts of Northern Tien Shan ridges.
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