时频电磁技术研究综述:技术、设备与应用

    Overview of time-requency electromagnetic techniques research: Technology, equipment and applications

    • 摘要: 时频电磁法(TFEM)是融合频率域人工源电磁法(CSEM)与瞬变电磁法(TEM)二者的优势发展而来的人工源电磁探测技术。该技术单次激发即可同步获取时域与频域电磁响应数据,兼具大勘探深度、多参数反演、高信噪比与强抗干扰能力等特征,为地下结构的精细刻画提供了技术支撑。本文系统阐述了TFEM的核心技术架构与国内外装备研发的演进脉络,重点剖析了其在油气勘探、矿产勘查及地热资源调查3大领域的理论模型、应用现状与技术瓶颈。研究表明,TFEM在探测深度与参数维度上有效突破了传统电磁法的局限,与当前能源资源勘探所要求的高精度、大深度目标高度适配。然而,其在矿产与地热领域的应用正处于规模化拓展的关键阶段,其潜力有待进一步挖掘。未来,TFEM将向地—空协同探测、三维/四维时移监测等方向拓展,并将在多物理场耦合、智能反演算法等方面持续创新,为其产业化应用与技术升级提供新动能。

       

      Abstract: The time-frequency electromagnetic method (TFEM) represents an artificial-source electromagnetic survey technology developed by integrating the advantages of both the frequency-domain controlled-source electromagnetic (FD-CSEM) method and the transient electromagnetic (TEM) method. This technology enables simultaneous acquisition of time-domain and frequency-domain electromagnetic responses with a single excitation. It is characterized by large exploration depths, multi-parameter inversion, high signal-to-noise ratio, and strong anti-interference capability, providing technical support for the fine characterization of subsurface structures. This study presents a systematic review of the TEFM, covering its core technical architecture and the equipment development roadmaps in China and abroad, with a particular emphasis on the analysis of the theoretical models, application status, and technical bottlenecks of the TFEM in three major fields, i.e., hydrocarbon exploration, mineral exploration, and geothermal resource surveys. The results of this study indicate that the TFEM effectively overcomes the limitations of traditional electromagnetic methods in exploration depth and parameter dimensionality, thus fully satisfying the high-precision and large-depth requirements of current energy resource exploration. However, its application in mineral and geothermal fields is in a critical stage of large-scale expansion, with its potential yet to be fully tapped. In the future, the TFEM technology will be expanded into fields such as ground-air collaborative detection and 3D/4D time-lapse monitoring, accompanied by constant innovations in multi-physics coupling and intelligent inversion algorithms. These advances will provide new impetus for its industrial application and technological upgrade.

       

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