首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >On the internal structure and mechanics of large strike-slip fault zones: field observations of the Carboneras fault in southeastem Spain
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On the internal structure and mechanics of large strike-slip fault zones: field observations of the Carboneras fault in southeastem Spain

机译:关于大型走滑断层带的内部结构和力学:西班牙东南部Carboneras断层的现场观察

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Deciphering the internal structure of large fault zones is fundamental if a proper understanding is to be gained of their mechanical, hydrological and seismological properties. To this end, new detailed mapping and microstructural observations of the excellently exposed Carboneras fault zone in southeastern Spain have been used to elucidate both the internal arrangement of fault products and their likely mechanical properties. The fault is a 40 km offset strike-slip fault, which constitutes part of the Africa-Iberia plate boundary. The zone of faulting is similar to I km in width not including the associated damage zone surrounding the fault. It is composed of continuous strands of phyllosilicate-rich fault gouge that bound lenses of variably broken-up protolith. This arrangement provides a number of fluid flow and fluid sealing possibilities within the fault zone. The gouge strands exhibit distributed deformation and are inferred to have strain hardening and/or velocity hardening characteristics. Also included in the fault zone are blocks of dolomite that contain thin (< I cm thick) fault planes inferred to have been produced by strain weakening/velocity weakening behaviour. These fault planes have a predominantly R-1 Riedel shear orientation and are arranged in an en echelon pattern. A conceptual model of this type of wide fault zone is proposed which contrasts with previous narrow fault zone models. The observed structural and inferred mechanical characteristics of the Carboneras fault zone are compared to seismological observations of the San Andreas fault around Parkfield, CA. Similarities suggest that the Carboneras fault structure may be a useful analogue for this portion of the San Andreas fault at depth. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 54]
机译:如果要对大型断层带的机械,水文和地震学特性有一个适当的了解,那么对它们的内部结构进行解密是至关重要的。为此,已经使用西班牙东南部极好的裸露的Carboneras断层带的新的详细测绘和微观结构观察来阐明断层产物的内部排列及其可能的力学性质。该断层是一个40 km的偏移走滑断层,它构成了非洲-伊比利亚板块边界的一部分。断层带的宽度类似于1 km,不包括断层周围的相关破坏带。它由富含叶硅酸盐的断层断屑的连续股线组成,这些断层断股线束缚着易碎原石的晶状体。这种布置在断层带内提供了多种流体流动和流体密封的可能性。凿线表现出分布的变形并且被推断为具有应变硬化和/或速度硬化特性。断层带中还包括白云岩块体,这些块体包含薄的(<1 cm厚)断层面,推测是由于应变减弱/速度减弱行为产生的。这些断层主要具有R-1 Riedel剪切方向,并以梯形排列。提出了这种类型的宽断裂带的概念模型,该模型与以前的窄断裂带模型形成对比。将Carboneras断层带的观测结构和推断的力学特征与加州帕克菲尔德附近的San Andreas断层的地震观测结果进行了比较。相似之处表明,Carboneras断层结构可能是圣安德烈亚斯断层深处这一部分的有用模拟。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:54]

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