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Seismic velocity modelling of the Carboneras Fault Zone, SE Spain

机译:西班牙东南部Carboneras断裂带的地震速度模拟

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The Carboneras fault zone forms part of a major strike-slip fault system in SE Spain, striking NE-SW, and accommodating up to 40 km displacement. It affects basement metamorphic rocks and unconformably overlying upper Miocene sediments and volcanic rocks. High-resolution shallow seismic tomographic sections were made across the fault zone in two localities. From the same areas, fault rocks and their wallrocks were collected for laboratory seismic velocity measurements. The laboratory data were corrected for the substantial effects of near-surface crack damage. By combining these results with geological cross sections, forward velocity models for the fault zone were constructed to compare with field seismic measurements and hence to 'ground-truth' the inferences made from them. These velocity/depth relationships matched moderately well with those extracted from the insitu tomography results. Aspects of the in-situ seismic sections matched features on the forward-modelled sections, but the comparisons showed that it is important to have some degree of foreknowledge of the geology to be able successfully to interpret seismic tomography sections as an exploration tool. (C) 2015 Elsevier B.V. All rights reserved.
机译:Carboneras断层带是西班牙东南部主要走滑断层系统的一部分,向NE-SW冲击,可容纳40 km的位移。它影响基底变质岩以及上新世沉积和火山岩的不整合。在两个地区的断层带上进行了高分辨率的浅层地震层析成像剖面。从同一地区收集了断层岩及其围岩,用于实验室地震速度测量。对实验室数据进行了校正,以了解近表面裂纹损坏的实质影响。通过将这些结果与地质断面相结合,构造了断层带的正向速度模型,以与野外地震测量结果进行比较,从而“推论”了它们的推论。这些速度/深度关系与从原位层析成像结果中提取的速度/深度关系适度匹配。现场地震剖面的各个方面与正演模拟剖面上的特征相匹配,但是比较表明,一定程度的地质知识才能成功地将地震层析成像剖面解释为一种勘探工具非常重要。 (C)2015 Elsevier B.V.保留所有权利。

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