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首页> 外文期刊>Progress in Earth and Planetary Science >Effects of frictional properties of quartz and feldspar in the crust on the depth extent of the seismogenic zone
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Effects of frictional properties of quartz and feldspar in the crust on the depth extent of the seismogenic zone

机译:地壳中石英与长石的摩擦特性对地震成矿带深度的影响。

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摘要

The depth extent of the crustal seismogenic zone is closely related to the size of earthquakes. The mechanisms that control the depth of the lower transition of the seismogenic zone are important issues in seismology and disaster mitigation. Laboratory studies have shown that the mechanism of earthquake nucleation is controlled by the frictional properties of fault materials. We measured the velocity dependences of the steady-state friction of quartz and feldspar, two major components of crustal rocks, under dry and wet conditions at temperatures up to 600?°C. In the presence of water, the temperature range over which the velocity dependence of steady-state friction was negative was wider for feldspar than for quartz, thus indicating that the temperature range of earthquake nucleation is wider for feldspar than for quartz. Considering that temperature increases with depth, our findings indicate that the material properties of feldspar likely play a dominant role in limiting the depth extent of the seismogenic zone.
机译:地壳成地震带的深度范围与地震的规模密切相关。控制震源区下部过渡深度的机制是地震学和减灾的重要问题。实验室研究表明,地震成核机理受断层材料的摩擦特性控制。我们在高达600?C的干湿条件下,测量了地壳岩石的两个主要成分石英和长石的稳态摩擦的速度依赖性。在水的存在下,长石的稳态摩擦速度依赖性为负的温度范围比石英宽,因此表明长石的地震成核温度范围比石英宽。考虑到温度随深度增加,我们的发现表明长石的材料特性可能在限制地震带的深度范围中起主要作用。

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