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Multi-proxy geophysical modeling of subsurface Neoproterozoic limestones: Applications for mining industry in the Tandilia System, Argentina

机译:地下尼泊奇石灰岩多功能地球物理建模:阿根廷矿业系统矿业矿业应用

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摘要

In this contribution, multi-proxy geophysical methods have been used to analyze the subsurface Neoproterozoic limestone mantle configuration. We also evaluate the relationship between the sedimentary cover and the crystalline basement in order to propose an integrated geophysical model for the graben structures of the Olavarria-Sierras Bayas area, Tandilia System, Argentina. We obtained gravimetric and magnetometric field measurements and vertical electrical sounding profiles (VES) over the prospected area to achieve this objective. The gravimetric and magnetometric high anomalies were associated with the surface basement's proximity recognized in the north and south-central regions. In contrast, the low anomalies correspond to a thickening of the sedimentary cover in the rest of the area. The explored graben configuration is defined by the NW-SE and NESW system faults of the Tandilia System. In the study area, the calculated sedimentary cover thickness is ca. 230 m in the south-central high anomaly region and reaches a maximum thickness of ca. 360 m in the southwest sector. The limestone mantle was detected inside the Neoproterozoic sedimentary succession sequence with the vertical electrical sounding (VES) at depths between ca. 40-60 m in the north sector and at ca. 130-145 m in the southern, with a degree of error close to 10% with respect to the drilling data. The link between the geophysical and the stratigraphic-structural models proves that the multi-proxy geophysical methods applied in this work constitute an improvement in order to understand the crystalline basement - sedimentary succession configurations. Moreover, this multi-proxy geophysical methodology allows estimating the depth and thickness of limestone mantle occurrence into graben-like structures with a high degree of confidence.
机译:在这一贡献中,已经使用多代理地球物理方法来分析地下内科罗佐石灰岩地幔配置。我们还评估沉积盖和晶体地下室之间的关系,以提出阿根廷奥拉瓦里亚 - 塞拉斯贝拉斯地区的Graben结构的集成地球物理模型。我们在展望区域获得了重量和磁测度场测量和垂直电探测轮廓(VES)以实现这一目标。重量和磁力测电高异常与北部和南部地区的表面地下室接近有关。相反,低异常对应于该地区的其余部分的沉积盖的增厚。探索的Graben配置由Tandilia系统的NW-SE和NESW系统故障定义。在研究区域,计算出的沉积覆盖厚度为CA。南中央高异常区域230米,达到CA的最大厚度。 360米在西南部门。利用CA之间的深度垂直电气探测(VES)在NeoproteroZoic沉积连续序列内检测到石灰石套道。北部部门和加利福尼亚州的40-60米。南部130-145米,误差程度接近钻孔数据的10%。地球物理和地层结构模型之间的联系证明,在本工作中应用的多代理地球物理方法构成了改进,以了解结晶地下室 - 沉积连续配置。此外,这种多功能地球物理方法允许在高度置信度的情况下估计石灰石壳体的深度和厚度。

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  • 来源
    《Journal of South American earth sciences》 |2021年第11期|103436.1-103436.10|共10页
  • 作者单位

    Univ Nacl Sur Inst Geol Sur INGEOSUR UNS CONICET Bahia Blanca Buenos Aires Argentina|Univ Nacl Sur Dept Geol UNS Bahia Blanca Buenos Aires Argentina;

    Univ Nacl Rio Negro Inst Invest Paleobiol & Geol Av Roca 1242 R8332EXZ General Roca Rio Negro Argentina|UNRN CONICET IIPG General Roca Argentina;

    Univ Nacl Sur Inst Geol Sur INGEOSUR UNS CONICET Bahia Blanca Buenos Aires Argentina|Univ Nacl Sur Dept Geol UNS Bahia Blanca Buenos Aires Argentina;

    Consejo Nacl Invest Cient & Tecn Inst Hidrol Llanuras Dr EJ Usunoff IHLLA Azul Argentina;

    Univ Nacl Sur Inst Geol Sur INGEOSUR UNS CONICET Bahia Blanca Buenos Aires Argentina|Univ Nacl Sur Dept Fis UNS Bahia Blanca Buenos Aires Argentina;

    Cementos Avellaneda SA Planta San Jacinto Casilla Correo 53 RA-7400 Paraje San Jacinto Olavarria Argentina;

    Univ Nacl La Plata UNLP Ctr Invest Geol CIG CONICET Diag 113 275 RA-1900 La Plata Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Neoproterozoic limestones; Geophysical methods; Cement industry; Graben structures; Sierras Bayas Group; Tandilia System;

    机译:NeoProteroZoic石灰岩;地球物理方法;水泥行业;Graben Structures;Sierras Bayas Group;Tandilia系统;

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