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Technogenic tectonic seismicity in Kuzbass

机译:Kuzbass中的技术构造地震性

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This paper presents an analysis of the development of the current seismic state of the Kuznetsk coal basin, which is characterized by an increase in technogenic seismicity of different types under the influence of prolonged intensive mining operations. The development of technogenesis led to a significant increase in technogenic seismicity in the Kuznetsk Basin in the 1970-1980s, when the number of technogenic earthquakes began to exceed the number of natural earthquakes. Among the various types of induced seismicity, special attention is paid to strong technogenic tectonic earthquakes with a regional magnitude M-b 3 and, accordingly, a seismic energy release of more than 10(9) J, i.e., earthquakes of energy class K 9. These small-focus earthquakes are often accompanied by destruction of underground mines, collapse of quarries and pits, damage to surface facilities and equipment, and other adverse effects. In this paper, such earthquakes are defined as technogenic tectonic to emphasize their dual origin: technogenic impacts and the subsequent relaxation of tectonic stresses. It is also noted that the Earth's interior in Kuzbass initially had its own natural seismicity and a developed system of tectonic faults. Natural seismotectonic activity combined with constantly increasing scales of mining and explosive consumption has led to an increase in the number of technogenic seismic events and their intensity. A striking example of such an event was the 18 June, 2013 Bachat earthquake with a regional magnitude M-b = 5.8 and a seismic intensity of 7 in the epicentral zone. It was the world's largest man-made earthquake induced by the mining of solid minerals. We consider the possible causes of this catastrophic earthquake and discuss the conditions favoring the formation of foci of such technogenic tectonic earthquakes resulting from changes in the geodynamic and hydrogeological conditions in the Earth's crust under man-caused impacts. These induced changes in n
机译:本文介绍了Kuznetsk煤盆地当前地震状态的发展,其特征在于,在长期密集采矿业务的影响下不同类型的技术地震性增加。在1970年至1980年代,在1970年至1980年代,施工中的施工中肌肉出血性的显着增加,当时的介绍地震的数量超过自然地震的数量。在各种类型的诱导地震中,特别关注强大的技术构造地震,具有区域幅度M-B>如图3所示,因此,高于10(9)J的地震能量释放,即能量级的地震k& 9.这些小型焦点地震往往伴随着地下矿山的破坏,采石场崩溃,坑,表面设施和设备损坏以及其他不利影响。在本文中,这种地震被定义为介绍构造,以强调其双重起源:赋予技术影响以及随后的构造应力松弛。还有人指出,地球在库兹巴斯的内部最初有自己的自然地震性和一个开发的构造故障系统。天然地震型活动结合不断增加的采矿和爆炸性消耗导致了介绍地震事件的数量及其强度的增加。这种事件的一个引人注目的例子是2013年6月18日Bachat地震,具有区域幅度M-B = 5.8和震中区中的7个地震强度。这是世界上最大的矿物质矿物致癌的人造地震。我们考虑这种灾难性地震的可能原因,并讨论了源于地球造成的地壳的地球动力学和水文地质条件的变化,讨论了对这种技术构造地震形成的焦点形成的条件。这些诱导的变化

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