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首页> 外文期刊>Journal of Geological Research >Remote Sensing and Geographic Information System for Fault Segments Mapping a Study from Taiz Area, Yemen
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Remote Sensing and Geographic Information System for Fault Segments Mapping a Study from Taiz Area, Yemen

机译:也门台兹地区断层遥感与地理信息系统制图研究

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摘要

GIS and remote sensing data for allowing detection of structural features, such as faults, offer opportunities for improving mapping and identifying the areas that are likely to be locations of faulting areas. Landsat ETM-7 satellite data images were used and band-5 was found as the most suitable band for lineament delineation, based on the ability to identify geological features. Four contributing factors, namely, drainage patterns, faults (previously mapped), lineaments, and lithological contacts layers, were parameters used in this study to produce a fault potential prediction map using the overlay model techniques. The potential map (fault susceptibility map) classifies the study area into five potential zones, namely, very low, low, moderate, high, and very high potential. The areas covered by moderate to the highest potential zones were considered as fault segments (fault lines) in the area. The comparison of the potential map and the published fault map by using GIS matching techniques shows that 75 fault segments (fault lines) in the potential map were not properly identified in the study area. The correlation between fault segments and faults data collected from field work stations shows that there were 39 fault segments which may represent new faults in the area being identified. The presence of these faults is not known from the literature; this leads to updating and revising of existing geological map of the study area.
机译:GIS和遥感数据可用于检测诸如断层之类的结构特征,这为改进制图和识别可能是断层区域的区域提供了机会。基于识别地质特征的能力,使用了Landsat ETM-7卫星数据图像,并发现Band-5是最适合进行界线描述的频段。四个贡献因素,即排水模式,断层(先前绘制的),岩层和岩性接触层,是本研究中使用覆盖模型技术生成断层电位预测图的参数。电位图(故障敏感性图)将研究区域分为五个潜在区域,即极低,低,中,高和极高的电位。中度到最高电位区域覆盖的区域被认为是该区域的断层段(断层线)。通过使用GIS匹配技术对电势图和已发布的断层图进行比较,发现在研究区域中未正确识别出电势图中的75个断层段(断层线)。断层段和从现场工作站收集的断层数据之间的相关性表明,在被识别的区域中有39个断层段可能代表新的断层。这些故障的存在从文献中是未知的。这将导致研究区域现有地质图的更新和修订。

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