首页> 外文期刊>Journal of structural geology >Damage zone characterization combining scan-line and scan-area analysis on a km-scale Digital Outcrop Model: The Qala Fault (Gozo)
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Damage zone characterization combining scan-line and scan-area analysis on a km-scale Digital Outcrop Model: The Qala Fault (Gozo)

机译:损伤区表征组合扫描线和扫描区分析对KM规模的数字露头模型:QALA故障(Gozo)

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摘要

Fault damage zones can act as a preferential corridor for fluid flow in the subsurface, and for this reason the characterization of their structure, including the attributes of the associated fracture network, is fundamental. In this work, we characterize the damage zone of the Qala fault, a normal fault developed in platform carbonates of the Gozo Island (Maltese Islands). We propose a new workflow that combines scanline and scan-area analysis applied on a high resolution DOM. Linear scanlines allow to characterize fracture spatial distribution, detect stationary area and identify damage zone width. Areal sampling permits to extract the fracture parameters matching the stationary 1D domains. This new approach allows us to: (1) univocally separate the damage zone from the background fractures, (2) identify fracture corridors, (3) collect fracture parameters (length, trend, density, intensity, spacing and topology), (4) identify the REV of the fracture density, intensity and topology and (5) characterize the fracture network connectivity.
机译:故障损坏区域可以充当地下流体流动的优先走廊,因此其结构的表征,包括相关骨折网络的属性是基本的。在这项工作中,我们表征了QALA故障的损伤区,是戈佐岛(马耳他岛屿)平台碳酸盐的正常故障。我们提出了一种新的工作流,将扫描线和扫描区域分析组合在高分辨率DOM上。线性扫描线允许表征断裂空间分布,检测静止区域并识别损坏区域宽度。区域采样允许提取匹配静止式1D域的裂缝参数。这种新方法使我们能够:(1)本身将损伤区与背景骨折,(2)识别骨折走廊,(3)收集骨折参数(长度,趋势,密度,强度,间距和拓扑),(4)识别裂缝密度,强度和拓扑的重值,(5)表征骨折网络连接。

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