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Magnetotelluric survey applied to geothermal exploration: An example at Seokmo Island, Korea

机译:大地电磁勘探在地热勘探中的应用:以韩国Seokmo岛为例

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摘要

A magnetotelluric (MT) survey has been performed to delineate deeply extended fracture systems at the geothermal field in Seokmo Island, Korea. To assist interpretation of the MT data, geological surveying and well logging of existing wells were also performed. The surface geology of the island shows Cretaceous and Jurassic granite in the north and Precambrian schist in the south. The geothermal regime has been found along the boundary between the schist and Cretaceous granite. Because of the deep circulation along the fracture system, geothermal gradient of the target area exceeds 45°C/km, which is much higher than the average geothermal gradient in Korea. 2D and 3D inversions of MT data clearly showed a very conductive anomaly, which is interpreted as a fracture system bearing saline water that extends at least down to 1.5 km depth and is inclined eastwards. After drilling down to the depth of 1280 m, more than 4000 tons/day of geothermal water overflowed with temperature higher than 70°C. This water showed very similar chemical composition and temperature to those from another existing well, so that they can be considered to have the same origin; i.e. from the same fracture system. A new geothermal project for combined heat and power generation was launched in 2009 in Seokmo Island, based on the survey. Additional geophysical investigations including MT surveys to cover a wider area, seismic reflection surveys, borehole surveys, and well logging of more than 20 existing boreholes will be conducted.
机译:已经进行了一项大地电磁(MT)调查,以描绘韩国Seokmo岛地热田中的深层扩展裂缝系统。为了帮助解释MT数据,还对现有井进行了地质调查和测井。该岛的表层地质显示北部为白垩纪和侏罗纪花岗岩,南部为前寒武纪片岩。在片岩和白垩纪花岗岩之间的边界发现了地热状态。由于沿裂缝系统的深度循环,目标区域的地热梯度超过45°C / km,远高于韩国的平均地热梯度。 MT数据的2D和3D反演清楚地显示了一个非常导电的异常,这被解释为一个含盐水的裂缝系统,该盐水至少向下延伸到1.5 km深度并向东倾斜。钻探到1280 m的深度后,超过4000吨/天的地热水溢出,温度超过70°C。这种水的化学组成和温度与另一口现有井的化学组成和温度非常相似,因此可以认为它们的来源相同。即来自同一断裂系统。根据这项调查,2009年在石岩岛启动了一个新的热电联产地热项目。还将进行其他地球物理调查,包括覆盖更广范围的MT勘测,地震反射调查,井眼调查以及对20多个现有井眼的测井。

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