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Factors influencing cavity detection in Karst terrain on two-dimensional (2-D) direct current (DC) resistivity survey: A case study from the western part of Thailand

机译:二维(2-D)直流(DC)电阻率调查中影响喀斯特地形中空洞探测的因素:以泰国西部为例

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摘要

To create a three-dimensional (3-D) cave and cavity network model in Karst terrain from two-dimensional (2-D) direct current resistivity (DCR) profiles, we first need to recognize their effects on the inversion results from a number of special cases. 2-D and 3-D cavity models are created to demonstrate effects from (1) depth of the cavity, (2) size and shape, (3) distance to the edge of the cavity, (4) orientations (inclination and declination) of the cavity and (5) several smaller cavities lying in an array. For other complicated models, combinations of these factors can be used to infer the results. Two parallel DCR profiles from the western part of Thailand were first inverted with the 2-D inversion for interpretation. Knowledge gained from the numerical modeling on these special cases is helpful to constrain the interpretation and also to extend the interpretation to 3-D. This gives us a picture of the 3-D cave and cavity networks beneath the area of study. Two main connected cavities between these two profiles can be inferred from the data along with several local cavities near the surface.
机译:要从二维(2-D)直流电阻率(DCR)剖面在喀斯特地形中创建三维(3-D)洞穴和空腔网络模型,我们首先需要从多个数字中识别它们对反演结果的影响特殊情况。创建2-D和3-D腔模型以演示以下方面的影响:(1)腔深度,(2)大小和形状,(3)到腔边缘的距离,(4)方向(倾斜和偏斜) (5)排列成阵列的几个较小的空腔。对于其他复杂模型,可以使用这些因素的组合来推断结果。首先将泰国西部的两个平行DCR剖面进行二维反演以进行解释。从这些特殊情况的数值建模中获得的知识有助于约束解释,也有助于将解释扩展到3-D。这为我们提供了研究区域下方的3-D洞穴和洞穴网络的图片。可以根据数据以及地表附近的几个局部腔来推断这两个轮廓之间的两个主要连通腔。

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