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Microseism Induced by Transient Release of In Situ Stress During Deep Rock Mass Excavation by Blasting

机译:爆破开挖深部岩体时原位应力瞬态释放引起的微震

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During deep rock mass excavation with the method of drill and blast, accompanying the secession of rock fragments and the formation of a new free surface, in situ stress on this boundary is suddenly released within several milliseconds, which is termed the transient release of in situ stress. In this process, enormous strain energy around the excavation face is instantly released in the form of kinetic energy and it inevitably induces microseismic events in surrounding rock masses. Thus, blasting excavation-induced microseismic vibrations in high-stress rock masses are attributed to the combined action of explosion and the transient release of in situ stress. The intensity of stress release-induced microseisms, which depends mainly on the magnitude of the in situ stress and the dimension of the excavation face, is comparable to that of explosion-induced vibrations.
机译:在采用钻探和爆破方法进行深层岩体开挖过程中,伴随着岩石碎片的分离和新自由表面的形成,该边界上的原位应力在几毫秒内突然释放,这被称为原位瞬时释放。强调。在此过程中,开挖面周围的巨大应变能以动能的形式立即释放,并且不可避免地在周围的岩体中引起微地震事件。因此,爆破开挖引起的高应力岩体中的微地震振动归因于爆炸作用和现场应力的瞬时释放的共同作用。应力释放引起的微震的强度,主要取决于原地应力的大小和开挖面的尺寸,与爆炸引起的振动的强度相当。

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