何鹏,董杰,管勇,等. 典型海岛地热资源勘查定井方法研究——以青岛市小管岛为例[J]. 海洋地质前沿,2023,39(8):38-48. DOI: 10.16028/j.1009-2722.2023.135
    引用本文: 何鹏,董杰,管勇,等. 典型海岛地热资源勘查定井方法研究——以青岛市小管岛为例[J]. 海洋地质前沿,2023,39(8):38-48. DOI: 10.16028/j.1009-2722.2023.135
    HE Peng, DONG Jie, GUAN Yong, et al. The well determination for geothermal resource explorationin typical islands in Xiaoguan Island, Qingdao[J]. Marine Geology Frontiers, 2023, 39(8): 38-48. DOI: 10.16028/j.1009-2722.2023.135
    Citation: HE Peng, DONG Jie, GUAN Yong, et al. The well determination for geothermal resource explorationin typical islands in Xiaoguan Island, Qingdao[J]. Marine Geology Frontiers, 2023, 39(8): 38-48. DOI: 10.16028/j.1009-2722.2023.135

    典型海岛地热资源勘查定井方法研究以青岛市小管岛为例

    The well determination for geothermal resource explorationin typical islands in Xiaoguan Island, Qingdao

    • 摘要: 海岛地区地质环境条件相对较复杂,地形起伏较大,地貌类型多样,地热地质条件特殊,选用合适的地热资源勘查定井的方法,对地热资源的勘查开发具有重要意义。以典型海岛−青岛市小管岛的地热资源勘查工作为例,综合分析小管岛地热地质条件,对比分析地热资源勘查物探方法的优缺点,有针对性地采用音频大地电磁测深(AMT)和高精度电磁频谱法(MES)相结合的勘查定井方法进行地热资源勘查。综合2种物探方法解释成果,获取研究区热储概念模型,确定地热井位置,成功施工1500 m地热井1眼,出水量121.2 m3/d,孔底温度39.2 ℃。根据小管岛地热资源勘查实例表明,采用AMT法和MES法在海岛地区进行地热资源勘查是可行的、有效的。

       

      Abstract: The geological environment conditions in island area are relatively complex, with large topographical fluctuations, various types of landforms, and special geothermal geological conditions. Choosing appropriate methods for geothermal resource exploration and well location is of great significance for the exploration and development of geothermal resources. Taking the geothermal resource exploration on Xiaoguan Island in Qingdao City as an example, we comprehensively analyzed the geothermal condition and compared the advantages and disadvantages of geophysical prospecting methods for geothermal resource exploration. Besides, by combining audio magnetotelluric (AMT) sounding method with high precision electromagnetic spectrum (MES) method, we interpreted the results of the two geophysical prospecting methods, obtained a conceptual model of thermal storage in the island area, identified the location of geothermal wells, and successfully constructed a 1500 m-deep geothermal well with a daily water output of 121.2 m3 and a 39.2 ℃ of bottom hole temperature. This study justified the feasibility and effectiveness of applying AMT and MES methods to explore geothermal resources in the island area.

       

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