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Use of controlled dynamic impacts on hierarchically structured seismically hazardous faults for seismically safe relaxation of shear stresses

机译:在分层结构的地震危险断层上使用受控动态影响,用于隔离剪切应力

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In the paper we briefly outline the experience in forecasting catastrophic earthquakes and the general problems in ensuring seismic safety. The purpose of our long-term research is the development and improvement of the methods of man-caused impacts on large-scale fault segments to safely reduce the negative effect of seismodynamic failure. Various laboratory and large-scale field experiments were carried out in the segments of tectonic faults in Baikal rift zone and in main cracks in block-structured ice cove of Lake Baikal using the developed measuring systems and special software for identification and treatment of deformation response of faulty segments to man-caused impacts. The results of the study let us to ground the necessity of development of servo-controlled technologies, which are able to provide changing the shear resistance and deformation regime of fault zone segments by applying vibrational and pulse triggering impacts. We suppose that the use of triggering impacts in highly stressed segments of active faults will promote transferring the geodynamic state of these segments from a metastable to a more stable and safe state.
机译:本文简要概述了预测灾难性地震的经验和确保地震安全的一般问题。我们的长期研究的目的是开发和改进人为对大规模故障段的影响,以安全地降低地震流动失败的负面影响。各种实验和大规模田间试验在贝加尔裂谷带构造故障的段和在贝加尔湖的块结构冰海湾主要裂缝使用的变形响应的识别和治疗的发达测量系统和专用软件进行对人类的影响有迹象。该研究的结果让我们基于伺服控制技术的发展,能够通过施加振动和脉冲触发冲击来提供更换故障区段的剪切电阻和变形状态。我们假设使用高度压力的积极断层段的触发影响将促进将这些段的地磁状态从亚稳态和安全状态转移到亚稳态。

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