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Coulombic faulting from the grain scale to the geophysical scale: lessons from ice

机译:从晶粒尺度到地球物理尺度的库仑断层:冰的教训

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Coulombic faulting, a concept formulated more than two centuries ago, still remains pertinent in describing the brittle compressive failure of various materials, including rocks and ice. Many questions remain, however, about the physical processes underlying this macroscopic phenomenology. This paper reviews the progress made in these directions during the past few years through the study of ice and its mechanical behaviour in both the laboratory and the field. Fault triggering is associated with the formation of specific features called comb-cracks and involves frictional sliding at the micro(grain)-scale. Similar mechanisms are observed at geophysical scales within the sea ice cover. This scale-independent physics is expressed by the same Coulombic phenomenology from laboratory to geophysical scales, with a very similar internal friction coefficient (mu approximate to 0.8). On the other hand, the cohesion strongly decreases with increasing spatial scale, reflecting the role of stress concentrators on fault initiation. Strong similarities also exist between ice and other brittle materials such as rocks and minerals and between faulting of the sea ice cover and Earth's crust, arguing for the ubiquitous nature of the underlying physics.
机译:在两个多世纪前提出的库仑断层概念,在描述包括岩石和冰块在内的各种材料的脆性压缩破坏方面仍然保持着相关性。然而,关于这种宏观现象学的物理过程仍然存在许多问题。本文通过研究冰及其在实验室和现场的力学行为,回顾了过去几年在这些方向上取得的进展。故障触发与称为梳状裂纹的特定特征的形成有关,并且涉及微观(晶粒)级的摩擦滑动。在海冰覆盖范围内的地球物理尺度上观察到类似的机制。从实验室到地球物理尺度,相同的库仑现象学表达了这种与尺度无关的物理学,并且具有非常相似的内部摩擦系数(μ大约为0.8)。另一方面,随着空间尺度的增大,内聚力大大降低,这反映了应力集中器在断层萌生中的作用。在冰与其他脆性物质(例如岩石和矿物)之间以及在海冰覆盖层的断层与地壳之间也存在着强烈的相似性,这证明了基础物理学的普遍性。

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