一系列的一维电流变换器和激电断层显示了区域地质构造的遗迹

S. Jonah
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引用次数: 0

摘要

在尼日利亚中部的尼日尔州基底复杂地质省,就在比达沉积盆地的东北部,当地地质具有非复杂性和高度均匀性的特征,其线性分布明显。这种认识使得在该地区寻找地下水资源时进行一维垂直电测深成为一种标准做法,并期望获得可靠的结果。这种表面上的“简单”意味着可以投入大量的体力劳动来获取当地调查区域的大型数据场,而这些区域的资源不容易获得,无法进行传统类型的标准二维调查。这对于米娜联邦科技大学纪丹河野校区的拟议开发区域尤其重要,因此,有了这种认识和使用ABEM Terrameter 4000设备,这项研究的目的是对这一拟议开发地区的一维电阻和伴随的诱导极化方案进行密集采集,以便在结构开发覆盖这些点之前获得有关可开采地下水位置的信息。在建议的新发展项目4平方公里范围内的441个主要地点,沿东西剖面线,在约309个测量站完成了典型的点对点的一维联列电阻和诱导极化测量。在对本次调查的数据场进行适当的处理和解释之后,同时注意到此处仅将诱导极化数据集用作质量控制“精炼器”,在拟议的新开发项目4平方公里面积范围的西南端观察到可靠的地下水位置集群。这与那里观察到的地形倾斜和相对较大的覆岩厚度相吻合。有趣的是,在一个偶然的转折中,一系列对角线的地下“断层线”将一个有前途的地下水远景与另一个连接起来,由一个突出的东北-西南倾斜来描述,与Kazaure-Karaukarau-Kushaka-Ilesha片岩带完全一致。在当今的现代地理环境中,卡扎雷-卡拉卡劳-库沙卡-伊莱沙片岩带实际上穿过尼日利亚景观的一条长长的对角线,穿过尼日利亚的吉加瓦、卡诺、卡杜纳、尼日尔、夸拉、埃基蒂和奥松等州。事实上,这个曾经突出的片岩带的表面没有任何迹象,这项研究揭示的是它的遗迹特征
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Series of 1-D ER and IP traverses reveal vestige of regional geological structure
At the Basement Complex geological province of central Nigeria, in the state of Niger, just northeast of the Bida Sedimentary Basin, there is the character of non-complexity and high uniformity in the local geology over an appreciable linear spread. This appreciation makes it a standard practice to do one-dimensional vertical electrical sounding surveys in the search for groundwater resources at this area with the expectation of reliable results. This seeming “simplicity” means that intense manual labour can be invested in acquiring a large data-field at a local area of survey where resources are not readily available to do a standard two-dimensional survey of the conventional kind. This is especially significant for the proposed area of development at the Gidan Kwano Campus of the Federal University of Technology, Minna, Thus, with this awareness and the use of the ABEM Terrameter 4000 equipment, the aim of this study was to do an intense acquisition of one-dimensional electrical resistance and concomitant induced polarization programme for this proposed area of development so as to achieve the objective of garnering information about exploitable groundwater locations before structural developments cover these points up. Typical point-to-point one-dimensional tandem electrical resistance and concomitant induced polarisation surveys were completed along east-west profile lines for about 309 survey stations of the available 441 principal locations of the 4 km2 extent of the proposed new development. After due processing and interpretation of the data-field of this survey, whilst remarking that the induced polarisation data-set was used herein as quality control “refiner” only, clusters of reliable groundwater locations were observed at the southwest end of the 4 km2 areal extent of the proposed new development. It conforms to the dip of the landform and comparatively significant overburden-material thicknesses observed over there. Interestingly, in a twist of serendipity, the series of diagonal subsurface “fault-lines” that connect one promising groundwater prospect with the other, describable by a prominent northeast-southwest dip, aligns exactly with the Kazaure-Karaukarau-Kushaka-Ilesha Schist Belt. In the modern geography setting of the present time, the Kazaure-Karaukarau-Kushaka-Ilesha Schist Belt actually traverses a lengthy diagonal across the landscape of Nigeria, cutting through such Nigerian states as Jigawa, Kano, Kaduna, Niger, Kwara, Ekiti, and Osun. There is virtually no surface indicator of this once-prominent schist belt and what this study reveals is its vestigial signature
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