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首页> 外文期刊>Journal of environmental & engineering geophysics >Time-Frequency Electromagnetic Method for Exploring Favorable Deep Igneous Rock Targets: A Case Study from North Xinjiang
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Time-Frequency Electromagnetic Method for Exploring Favorable Deep Igneous Rock Targets: A Case Study from North Xinjiang

机译:探测有利深部火成岩靶区的时频电磁方法——以北疆为例

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The detection of deep targets has always been a challenging topic for controlled source electromagnetic methods; however, the time-frequency electromagnetic method (TFEM) can overcome some of these challenges. In this paper, we introduce the method and showcase the technique for imaging deep targets using optimal offsets and transmission periods. In addition, we implement a simulated annealing constrained inversion, based on well-seismic data, to illustrate improvement in the effective detection depth and the ability to identify deep targets. We apply TFEM for two targets in North Xinjiang to show that internal multiple sets of layered series in a deep Carboniferous system and the volcanic rock mass developed in this area can be imaged. We conclude that the low-resistivity layer inside the Carboniferous system is the response of hydrocarbon source beds of muddy clastic rocks and predict that the high-resistivity layer is a favorable reservoir of volcanic rocks. Subsequent drilling confirmed the structural characteristics of the Carboniferous system revealed by TFEM data.
机译:对于受控源电磁方法来说,深层目标的探测一直是一个具有挑战性的话题;然而,时频电磁法(TFEM)可以克服其中的一些挑战。在本文中,我们介绍了该方法,并展示了使用最佳偏移和透射周期对深部目标进行成像的技术。此外,我们基于地震井数据实现了模拟退火约束反演,以说明有效探测深度和深层目标识别能力的改进。本文对北疆的两个靶区进行了TFEM研究,结果表明,石炭系深部的内部多组层状层状系列和该地区发育的火山岩体均可成像。本文认为石炭系内部的低电阻率层是泥质碎屑岩烃源层的响应,并预测高电阻率层是有利的火山岩储集层。随后的钻探证实了TFEM数据所揭示的石炭纪系统的结构特征。

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