Geo-electrical Investigation for Sulfur Prospecting in Teshreen Structure in Northeast Syria

J. Asfahani, R. Mohamad
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引用次数: 10

Abstract

Electrical and structural characteristics of formations favorable for sulfur occurrences in northeast Syria are described using geo-electrical prospecting methods. Simple (VES) and combined (CVES) Schlumberger vertical electrical soundings and geo-electrical profiling using a Wenner configuration were applied to the Teshreen structure. Six profiles (A, B, C, D, E, and F) at the borders of anticlines, where positive and negative structures are joined and salt formations have a tendency to disappear, were studied. Secondary structures, characterized by high apparent resistivity exceeding 3000 Ohm.m were located on each profile using a Wenner profiling configuration. These secondary structures are demonstrated to be favorable for sulfur prospecting by both drilled wells and vertical electrical soundings. Traditional interpretation of the 84 VES measurments is supported by data from 14 CVES measurments. The CVES technique is a powerful tool, due to its improved resolution of the electrical boundaries. Thicknesses and resistivities of the Lower Al-Fares, Al-Garibeh, and Al-Dibbaneh formations were determined through the interpretation of VES measurments. The same VES measurments were then interpreted using the Pichgin method, whereby all the subsurface tectonic features were determined for depth penetration corresponding to AB/2 = 1000 m. The integration of the first and second VES phases creates a clear picture of the subsurface, including tectonic, geometric, and geo-electrical information. In summary, the sulfur occurrences in the research area are controlled by tectonic paths that are well defined by geo-electrical methods. These diverse geo-electrical methods could be used successfully for sulfur prospecting in similar environments.
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叙利亚东北部特什林构造找硫的地电性研究
利用地电法描述了叙利亚东北部有利产硫地层的电性和构造特征。简单(VES)和组合(CVES)斯伦贝谢垂直电测深和地电剖面利用Wenner配置应用于Teshreen构造。研究了背斜边缘的6条剖面(A、B、C、D、E和F),其中正、负构造连接,盐层有消失的趋势。二级结构,其特征是视电阻率高,超过3000欧姆。使用Wenner分析配置将m定位在每个配置文件上。这些次生构造经钻探和垂向电测深均证明有利于找硫。84次地震动测量的传统解释得到了14次地震动测量数据的支持。cve技术是一种强大的工具,因为它提高了电边界的分辨率。下部Al-Fares、Al-Garibeh和Al-Dibbaneh地层的厚度和电阻率是通过对电成像测量结果的解释确定的。然后使用Pichgin方法解释相同的VES测量结果,根据AB/2 = 1000 m的深度,确定所有地下构造特征。第一阶段和第二阶段的整合创建了一个清晰的地下图像,包括构造,几何和地电信息。综上所述,研究区硫赋存受构造路径控制,这些构造路径由地电方法确定。这些不同的地电方法可以成功地用于类似环境下的找硫。
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