首页> 外文期刊>New Zealand journal of geology & geophysics >Rock failure and erosion of a fault damage zone as a function of rock properties: Alpine Fault at Waikukupa River
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Rock failure and erosion of a fault damage zone as a function of rock properties: Alpine Fault at Waikukupa River

机译:岩石破坏和断层破坏带的侵蚀与岩石特性的关系:怀库库帕河的高山断层

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摘要

Erosion rates in the hanging wall of the Alpine Fault are high, keeping pace with rock uplift over time frames of 10(4)-10(6)years. On shorter time frames, prediction of temporal and spatial distribution of erosion is challenging and must account for local conditions and parameters including rock strength, topographic stresses and failure conditions. Constrained by field observations of rock strength, we use 3D mechanical models to predict where and by what mechanism slope failure and erosion are likely to take place along the Waikukupa section of the Alpine Fault. Shear failure is favoured along the base of slopes and where pore pressure is high. Tensile failure is favoured along ridges, higher on slopes and when pore pressure is moderate. A dry material with a high degree of rock strength heterogeneity promotes bedrock gully development, whereas distributed failure is more likely to occur when the material is saturated.
机译:高寒断层的悬壁侵蚀速率很高,在10(4)-10(6)年的时间范围内与岩石隆升保持同步。在较短的时间范围内,预测侵蚀的时空分布具有挑战性,并且必须考虑局部条件和参数,包括岩石强度,地形应力和破坏条件。受岩石强度的现场观察的约束,我们使用3D力学模型来预测沿阿尔卑斯断层的Waikukupa断面可能在何处以及通过何种机制发生斜坡破坏和侵蚀。沿斜坡底部以及孔隙压力较高的地方,剪切破坏尤为突出。沿山脊有利于拉伸破坏,在斜坡上和孔隙压力适中时则有利。具有高度岩石强度异质性的干燥材料会促进基岩沟的发育,而当材料饱和时,更可能发生分布破坏。

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