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Method for Constructing a Model of a Geoelectric Section Taking into Account Seasonal Variations Based on Data from Long-Term Vertical Electric Sounding Monitoring in Search of Earthquake Precursors

机译:基于长期垂直电声监测数据以寻找地震前兆的考虑季节变化的地电断面模型的构建方法

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The study analyzes data from high-precision measurements of the apparent resistivity by a stationary multielectrode vertical electric sounding (VES) system including 12 current and 4 potential lines spaced 2–650 m apart. Observations had been being carried out at the Garm test area on a daily basis for 12 years in an earthquake prediction experiment. The use of special technical methods during measurements ensured an instrumental error of about 0.01%. The virtual error of each individual measurement of apparent resistivity (taking into account all possible noise) was 0.1–0.2%. The availability of more than 3000 VES curves measured in different seasons allows us to propose a new approach to constructing a geoelectric section model. To solve the inverse VES problem, a set of 36 averaged 10-day VES curves was analyzed, each of which was obtained by averaging approximately 100 individual VES curves accumulated in the same 10-day period of the annual (seasonal) cycle in different years. Comparative analysis of these curves made it possible to calculate and include corrections for stationary geological noise in the model. As a result, it was possible to substantially reduce (by an order of magnitude) the discrepancies in fitting the curves and dramatically narrow the equivalence domain. Based on the results of our analysis, we have constructed a model of a four-layer horizontally layered geoelectric section of the Khazor-Chashma depression to adequately describe not only the averaged section, but also its seasonal variations throughout the year. The stability in estimating the model parameters is studied. To further reduce the equivalence domain, we propose that the layer thicknesses be fixed. This model can be used not only to study the aforementioned characteristics of the section, but also to monitor time variations of resistivity in individual layers of the section. This will significantly improve the resolving power of systems for detecting time variations in geoelectric sections, including when searching for earthquake precursors.
机译:该研究分析了由固定多电极垂直电测深(VES)系统对视电阻率进行的高精度测量得到的数据,该系统包括12条电流和4条相距2–650 m的电位线。在地震预测实验中,每天在Garm测试区进行观察长达12年。在测量过程中使用特殊的技术方法可确保约0.01%的仪器误差。视电阻率的每个单独测量(考虑所有可能的噪声)的虚拟误差为0.1–0.2%。在不同季节测量的3000多个VES曲线的可用性使我们能够提出一种构建地电剖面模型的新方法。为了解决VES逆问题,分析了一组36个平均的10天VES曲线,每条曲线是通过对在不同年份的年度(季节)周期的同一10天时段内大约100条单独的VES曲线求平均值而获得的。通过对这些曲线的比较分析,可以计算并包括对模型中固定地质噪声的校正。结果,可以显着减少(数量级)拟合曲线的差异并显着缩小等效域。根据我们的分析结果,我们构建了Khazor-Chashma凹陷的四层水平分层地电断面模型,不仅可以充分描述平均断面,而且可以充分描述全年的季节变化。研究了估计模型参数的稳定性。为了进一步减小等效域,我们建议固定层的厚度。该模型不仅可以用于研究截面的上述特征,而且可以监视截面各个层中电阻率的时间变化。这将显着提高用于检测地电部分中时间变化的系统的分辨能力,包括在搜索地震前兆时。

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