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Networking of shear zones at the brittle-to-viscous transition (Cap de Creus, NE Spain)

机译:脆性到粘稠过渡的剪切带网络(西班牙东北部德克鲁斯角)

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A crustal-scale shear zone network at the fossil brittle-to-viscous transition exposed at Cap de Creus, NE Spain evolved by coeval fracturing and viscous, mylonitic overprinting of an existing foliation. Initial fracturing led to mylonitic shearing as rock softened in ductilely deformed zones surrounding the fractures. Mylonitic shear zones widened by lateral branching of fractures from these shear zones and by synthetic rotation of the existing foliation between the fractures and shear zones. Shear zones lengthened by a combination of fracturing and mylonitic shearing in front of the shear zone tips. Shear zones interconnected along and across their shearing planes, separating rhomb-shaped lozenges of less deformed rock. Lozenges were subsequently incorporated into the mylonitic shear zones by widening in the manner described above. In this way, deformation became homogeneous on the scale of initial fracturing (metre- to decametre-scale). In contrast, the shear zone network represents localisation of strain on a decametre-length scale. The strength of the continental crust at the time of coeval fracturing and viscous shearing is inferred to have decreased with time and strain, as fracturing evolved to mylonitic shearing, and as the shear zones coalesced to form a through-going network subparallel to the shearing plane. Crustal strength must therefore be considered as strain- and scale-dependent.
机译:西班牙东北部Cap de Creus暴露的化石脆性至粘稠过渡带的地壳尺度剪切带网络是通过同时期裂隙和粘性,对现存叶脉的淀粉状叠印而演化的。最初的压裂导致岩石断层周围的韧性变形区域中的岩石软化,从而导致了绵状岩的剪切作用。通过从这些剪切带的裂缝横向分支以及通过在裂缝和剪切带之间的现有叶层的合成旋转,使Mylonitic剪切带变宽。剪切区尖端前面通过压裂和髓鞘剪切相结合而延长了剪切区。剪切区域沿其剪切平面相互连接,从而将变形较小的菱形菱形菱形分隔开。随后通过上述方式加宽将锭剂掺入到淀粉样剪切区中。这样,变形在初始压裂范围(米至十亿分之一)上变得均匀。相反,剪切带网络代表了以十米为单位的应变局部化。可以认为,随着裂隙发展为my状剪切,并且随着剪切带的聚结形成了一个平行于剪切平面的直通网,随着时间和应变的增加,大陆壳的强度随着时间和应变的增加而降低。 。因此,必须将地壳强度视为取决于应变和尺度。

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