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首页> 外文期刊>TAO: Terrastrial, atmospheric, and oceanic sciences >Using Integrated 2D and 3D Resistivity Imaging Methods for Illustrating the Mud-Fluid Conduits of the Wushanting Mud Volcanoes in Southwestern Taiwan
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Using Integrated 2D and 3D Resistivity Imaging Methods for Illustrating the Mud-Fluid Conduits of the Wushanting Mud Volcanoes in Southwestern Taiwan

机译:使用集成的2D和3D电阻率成像方法来说明台湾西南部乌山亭泥质火山的泥浆管道

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摘要

We conducted 2D and 3D looped resistivity surveys in the Wushanting Natural Landscape Preservation Area (WNLPA) in order to understand the relationships of the mud-fluid conduits in the mud volcano system. 2D resistivity surveys were conducted along seven networked lines. Two separate C-shape looped electrode arrays surrounding the volcano craters were used in the study. First, the two 3D looped measurements were inverted separately. Yet the inverted 3D images of the mud-volcano system were inconsistent with the landscape features suggesting that artifacts perhaps appeared in the images. The 3D looped data were then combined with the 2D data for creating a global resistivity model of WNLPA. The resulting 3D image is consistent with the observed landscape features. With the resistivity model of WNLPA, we further tried to estimate the distribution of water content. The results suggest that the 3D resistivity image has the potential to resolve the dual porosity structures in the mudstone area. Last, we used a simplified WNLPA model for forward simulation in order to verify the field measurement results. We have concluded that the artifacts in the 3D looped images are in fact shadow effects from conductive objects out of the electrode loops, and that inverted images of combined 2D and 3D data provide detailed regional conductive structures in the WNLPA site.
机译:为了了解泥火山系统中泥浆管道的关系,我们在巫山亭自然景观保护区(WNLPA)进行了2D和3D环状电阻率调查。二维电阻率调查是沿着7条联网线进行的。这项研究使用了围绕火山口的两个独立的C形环形电极阵列。首先,将两个3D环形测量分别反转。然而,泥火山系统的倒转3D图像与景观特征不一致,这表明伪像可能出现在图像中。然后将3D循环数据与2D数据组合起来,以创建WNLPA的整体电阻率模型。生成的3D图像与观察到的景观特征一致。利用WNLPA的电阻率模型,我们进一步尝试估算含水量的分布。结果表明3D电阻率图像具有解决泥岩地区双重孔隙结构的潜力。最后,我们使用简化的WNLPA模型进行正向仿真,以验证现场测量结果。我们得出的结论是,3D环形图像中的伪像实际上是来自电极回路之外的导电物体的阴影效应,并且组合的2D和3D数据的倒像在WNLPA站点中提供了详细的区域导电结构。

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