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Electrical structure revealed by magnetotelluric data at the east part of central Asian orogenic belt, central Inner Mongolia

机译:内蒙古中部欧洲敌人的东部的磁音素数据揭示了电气结构

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The cental Asian orogenic belt (CAOB) which between the North China Craton and the Siberian Craton is one of the tectono-metallogenic belts in the world. The central Inner Mongolia belongs to the eastern part of the CAOB, recently a series of research and exploration work has been done in this region. However, no breakthrough has been made in the exploration of metal ore. In order to research current mineralization issues in the eastern part of the CAOB, a long magnetotelluric (MT) profile was acquired across the central part of Inner Mongolia. The profile starts within the DongUjimqinqi in the northwest, goes southeastward across the Chagan Obo-Arongqi fault, the Erenhot-Hegenshan fault, the Xilinhot fault and the Linxi fault, and ends around the Xar Moron fault in the northern part of Chifeng city; the strike direction of most faults is southeast; the faults have direct control effect to the magmation and mineralization of this region. The model of electrical structure along the profile can be divided into two regions: widely distributed low resistivity is the key feature north of Nianzigou; high resistance is the key feature south of Nianzigou. The Chagan Obo-Arongqi fault, the Erenhot-Hegenshan fault and the Xilinhot fault all present as a southeastward dipping conductor, which reflects their overthrusting process; there are many high conductivity areas along the faults in the region. The electrical structure to the south of Nianzigou is expressed as a mushroom shape, which reflects the tectonic origin of magmatic rock in this region.
机译:华北克拉顿和西伯利亚克拉顿之间的中心亚洲造山带(曹)是世界上的构造 - 金属皮带之一。内蒙古中部蒙古属于曹的东部,最近在这个地区已经完成了一系列的研究和探索工作。然而,在金属矿石勘探中没有取得突破。为了研究Caob东部的当前矿化问题,在内蒙古的中央部分获得了一个长的Magnetelluric(MT)型材。该档案在西北地区的东莞吉米尼奇突破,横跨赤山欧洲群岛故障,埃伦特 - 赫格森山故障,Xilinhot故障和林喜故障,并在赤峰市北部的XAR白灵断层周围结束;大多数断层的罢工方向是东南部;故障对该区域的岩浆和矿化具有直接的控制效应。沿轮廓的电气结构模型可分为两个区域:广泛分布的低电阻率是Nianzigou北部的关键特征;高抗性是尼齐沟以南的关键特征。 Chagan Obo-Arongqi断层,Erenhot-Hegenshan故障和Xilinhot Fault全部作为东南浸渍导体,这反映了其覆盖过程;沿该地区故障存在许多高电导率区域。 Nianzigou南部的电气结构表示为蘑菇形状,反映了该区域中岩浆岩石的构造起源。

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