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Structural geologic control with the limestone bedrock associated with piling problems using remote sensing and GIS: a modified geomorphological method

机译:利用遥感和GIS对与打桩问题相关的石灰岩基岩进行结构地质控制:一种改进的地貌方法

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Geotechnical engineering and unpredictable piling problems of highly urbanized areas underlain by intensive geological fracture zones require a better understanding of their spatial pattern and developments. Unlike traditional techniques which use geophysical survey and visual interpretation of optical satellite images, this study presents a modified approach to revealing the buried geological fractures in karst terrain, which incorporates Wood’s algorithm. The algorithm binary maps were modified by applying additional Soble filter with 10% threshold and equalization enhancement. These modifications have proven good discrimination for morphological linear and curvilinear derived from DEM. Results of the modified method were compared to the existing geological map and validated by conducting field observations. The analysis of the results and corresponding geological and topographical maps showed the effectiveness of the method to recognize the pattern of buried geological fractures. The results obtained demonstrated that maps of the modified method can be used as a reference map prior to any site investigation.
机译:高强度地质裂缝带在高度城市化地区的岩土工程和不可预测的堆砌问题,要求对其空间格局和发展有更好的了解。与使用地球物理勘测和光学卫星图像的视觉解释的传统技术不同,这项研究提出了一种改进的方法来揭示岩溶地形中的埋藏地质裂缝,该方法结合了Wood的算法。通过应用具有10%阈值和均衡增强功能的附加Soble滤波器来修改算法二进制映射。事实证明,这些修改对源自DEM的形态线性和曲线具有很好的区分能力。修改后的方法的结果与现有的地质图进行了比较,并通过实地观察进行了验证。对结果的分析以及相应的地质和地形图表明,该方法可有效识别掩埋地质裂缝的模式。获得的结果表明,在进行任何现场调查之前,可以将修改后的方法的地图用作参考地图。

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