首页> 外文期刊>Journal of structural geology >Modeling the influence of tectonic extrusion and volume loss on the geometry, displacement, vorticity, and strain compatibility of ductile shear zones
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Modeling the influence of tectonic extrusion and volume loss on the geometry, displacement, vorticity, and strain compatibility of ductile shear zones

机译:模拟构造挤压和体积损失对韧性剪切带的几何形状,位移,涡度和应变相容性的影响

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摘要

Oblate strains are often observed in meso-scale ductile shear zones and this is generally taken to indicate narrowing across the shear zone during formation. Volume loss is one mechanism that could produce shear zone narrowing. However, not all shear zones display characteristics consistent with volume loss, and in such cases, the narrowing must be accomplished by the extrusion of material from within the shear zone. To explore the relationship between shear zone geometry, volume loss, and extrusion, shear zones were mathematically modeled. Results demonstrate the important influence of pure shear and volume loss on controlling the geometry, displacement, and vorticity of ductile shear zones. Further, volume loss does not preclude extrusion unless, for a given volume loss, the strain is of a specific geometry. Extrusion is a likely mechanism important in shear zone development, even if volume loss occurs. Extrusion presents strain compatibility problems because, unlike crus-tal-scale shear zones, meso-scale ductile shear zones do not possess a free surface. If extrusion occurs, bulk strain compatibility can be maintained if shear zones interlink in anastomosing arrays or change in thickness, though not all shear zone systems display such characteristics. Modeling results elucidate the deformation style of shear zone in the northwest Adirondacks in NY and in the Kebnekaise region in northern Sweden.
机译:通常在中尺度延性剪切带中观察到扁形应变,通常认为这是在形成过程中整个剪切带变窄。体积损失是可能导致剪切区变窄的一种机制。但是,并非所有剪切区都显示出与体积损失一致的特性,在这种情况下,必须通过从剪切区内挤出材料来实现变窄。为了探讨剪切带几何形状,体积损失和挤压之间的关系,对剪切带进行了数学建模。结果表明,纯剪切力和体积损失对控制韧性剪切区的几何形状,位移和涡度具有重要影响。此外,体积损失不排除挤出,除非对于给定的体积损失,应变具有特定的几何形状。即使发生体积损失,挤出也是在剪切区发展中重要的可能机制。挤压存在应变相容性问题,因为中尺度延性剪切区不像地壳剪切区那样具有自由表面。如果发生挤压,如果剪切区在吻合阵列中相互链接或厚度发生变化,尽管并非所有剪切区系统都显示出这种特性,但仍可以保持整体应变相容性。建模结果阐明了纽约西北部阿迪朗达克山脉和瑞典北部凯布耐卡兹地区的剪切带变形形式。

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