航空磁测技术在尼日利亚西南部典型基底杂岩地下水勘探中的应用

M. Aroyehun
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引用次数: 0

摘要

本研究旨在利用航磁地球物理方法调查联邦理工学院Ado校区部分地区报告的钻孔失效部件的原因。对覆盖该区域的航磁地球物理数据进行处理,使用不同的增强技术(如导数和波长滤波器)来增强浅层异常。去除区域分量后,总磁场强度为-28 ~ 201nt。剩磁异常范围为-21 ~ 127 nT;第一次垂直导数范围为-0.18 ~ 0.36 nT/m;磁分析信号(AS)范围为0.03 ~ 0.36 nT/m。通过对比该地区的磁响应和地质情况,观察到该地区下面的岩石具有密切的磁化率。因此,地磁的变化主要受沉积物厚度和可疑线性构造的控制,这是基底复杂地下水勘探的主要因素。原子吸收光谱法和光谱法显示,研究区至基底的可能深度为8.13 ~ 74.05 m,表明研究区南部的风化层较北部厚。然而,线性结构均匀分布在整个研究区域。因此,研究区南部受风化层厚度的影响,地下水潜力较高。研究区北部较为突出的地下水失稳钻孔并非位于线性构造上。因此,在典型的基底复杂地形中,地下水勘探时应考虑基底深度和线状结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aeromagnetic Survey as Reconnaissance Technique for Groundwater Exploration in a Typical Southwestern Nigeria Basement Complex
This study was aimed at investigating the causes of reported boreholes failureparts in some part of the Federal Polytechnic Ado Campus using aeromagnetic geophysical method. The aeromagnetic geophysical data covering the area was processed to enhance shallow anomalies using different enhancement techniques such as derivatives and wavelength filters. Total Magnetic Intensity ranges from -28 to 201 nT after removing regional component. Residual magnetic anomaly ranges from -21 to 127 nT; First vertical derivative ranges from -0.18 to 0.36 nT/m; Magnetic Analytic signal (AS) ranges from 0.03 to 0.36 nT/m. It was observed, by correlating the magnetic responses and geology of the area, that rocks underlain the area have close magnetic susceptibility. Consequently, the variations of earth’s magnetism are mainly controlled by sediment thickness and suspected linear structures which are major factors in basement complex groundwater exploration. The probable depth to basement in the study area ranges from 8.13 to 74.05 m as revealed by AS and spectral method, which implies thicker regolith in southern part of the study area than northern part. However, linear structures are evenly distributed across the study area. Therefore, the groundwater potential of the southern part of the study area is higher due to regolith thickness. The failed groundwater boreholes that are prominent in northern part of the study area are not located on linear structures. Therefore, basement depth and linear structures should be considered during reconnaissance survey in groundwater exploration in a typical Basement Complex terrain.
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