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Magnetotelluric Imaging of the Zhangzhou Basin Geothermal Zone, Southeastern China

机译:中国东南部漳州盆地地热区的大地电磁成像

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The geothermal zone of southeast China, which is one of the country’s known geothermal zones, contains significant natural geothermal resources. To understand the formation of geothermal resources, a magnetotelluric (MT) investigation with a site spacing of 1–2 km was carried out around the Zhangzhou Basin. The recorded MT data were processed by robust time series and remote reference processing techniques. The data analysis results revealed that two-dimensional (2-D) modeling can be used to approximately determine the electrical structure. The joint inversions of TE and TM modes have been performed after distortion decomposition. In the inversion models, a low resistivity cap of 200–800 m thickness was observed, which represented the blanketing sediments composed of Quaternary and volcanic rocks of the late Jurassic period. The presence of high resistivity above a depth of 20 km indicates the granites are widely developed in the upper and middle crust. MT measurements have revealed some deep-seated high conductive zones, which were inferred to be partially melting at depth of 8–17 km, which is likely to be reason behind the formation of higher-temperature hot springs. The results also show that there is a shallower Moho, which indicates that the heat from the upper mantle may have a big contribution to the surface heat flow. Fractures-controlled meteoric fluid circulation is the most likely explanation for the hot springs.
机译:中国东南部的地热区是中国已知的地热区之一,拥有大量的自然地热资源。为了了解地热资源的形成,在漳州盆地周围进行了1-2 km的站点间距的大地电磁(MT)调查。记录的MT数据通过可靠的时间序列和远程参考处理技术进行处理。数据分析结果表明,可以使用二维(2-D)建模近似确定电气结构。 TE和TM模式的联合反演是在失真分解之后进行的。在反演模型中,观察到厚度为200-800 m的低电阻率盖,代表了侏罗纪晚期第四纪和火山岩组成的覆盖沉积物。在20 km深度以上存在高电阻率,表明花岗岩在上地壳和中地壳中广泛发育。 MT测量揭示了一些深层的高导电区域,据推测这些区域在8-17 km的深度处部分融化,这很可能是形成高温温泉的原因。结果还表明,有一个较浅的莫霍面,这表明来自上地幔的热量可能对地表热流有很大的贡献。裂缝控制的大气流动是最有可能解释温泉的原因。

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