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    地震频率谐振技术在地热资源勘查中的应用——以咸阳城区为例

    Application of Seismic Frequency Resonance Technology in Geothermal Resource Exploration: A Case Study of Xianyang Urban Area

    • 摘要: 咸阳地区的地热资源十分丰富,是全国首批命名的"中国温泉之城"。由于常规物探方法在开发城区内的地热资源时受到干扰因素较多,使得其探测深度和精度不能满足我们的目的要求,本次采用一种新型的物探方法-地震频率谐振技术对该区进行地热资源勘查。通过利用该方法获得了区内地下4000米范围内的地层波阻抗信息,并结合区内已有的地质、钻孔等资料对其进行地质信息成果解译,推断出该地区地层岩性、深度、厚度的变化及构造(断层)发育特征。结果表明:地震频率谐振技术是地热资源勘查中一种有效的物探勘查技术,同时为该地区后续地热资源勘查提供了重要的科学依据和方法技术借鉴。

       

      Abstract: The Xianyang area has abundant geothermal resources and is one of the first cities to be named as "China Hot Spring Cities". Conventional geophysical methods face significant limitations in urban geothermal exploration due to high interference factors, resulting in insufficient detection depth and accuracy. To address these challenges, this study employs an innovative geophysical approach-seismic frequency resonance technology-to conduct geothermal resource exploration in the study area. By applying this method, stratigraphic wave impedance information within 4000 meters underground was obtained. Combined with previous geological and borehole data, variations in lithology, depth, thickness, and structure (fault) were determined. The results demonstrate that SFR technology is an effective geophysical method and provides critical scientific insights for future geothermal exploration in this area.

       

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