首页> 外文期刊>Geodinamica Acta >Mixing of geothermal and non-geothermal fluids in shallow aquifers in the Germencik-Nazilli area, Büyük Menderes Basin (SW Turkey)
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Mixing of geothermal and non-geothermal fluids in shallow aquifers in the Germencik-Nazilli area, Büyük Menderes Basin (SW Turkey)

机译:BüyükMenderes盆地Germencik-Nazilli地区浅层含水层中的地热和非地热流体混合(土耳其西南)

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This study observes groundwater hydrochemical characteristics during mixing between geothermal and non-geothermal fluids in Germencik–Nazilli area in the Büyük Menderes Basin (SW Turkey). Hydrogeochemical features of 32 non-geothermal, geothermal and surface samples were studied. The mean temperatures of the geothermal reservoirs are calculated to be 150–240?°C in Germencik field, based on Na-K-Mg geothermometry. Hydrochemical characteristics of Germencik geothermal fluid differ from non-geothermal fluids, mainly Na-Cl-HCO_(3)-type geothermal fluid, while non-geothermal fluid is mostly Ca-Mg-HCO_(3)-SO_(4) type. High contents of some minor elements in geothermal fluids are most likely sourced from prolonged water-rock interaction, reflecting the signals of flow paths and residence times. A mass-balance approach was used to calculate mixing ratios between geothermal and non-geothermal fluids based on B, Cl and Na concentrations. Germencik field is considerably characterised by rising geothermal fluids and overlying non-geothermal fluids. The amount of water stored in the Quaternary aquifer evolved from a deep thermal source is low in Germencik (.5–40% geothermal fluid in non-geothermal wells). Mixing between geothermal and non-geothermal fluids has been caused by groundwater utilisation practices and is increased close to active faults. Irrigation of the shallow groundwater composition is considered as influx of low-temperature geothermal fluid.
机译:这项研究观察了比尤克·曼德斯盆地(SW Turkey)的Germencik–Nazilli地区地热与非地热流体混合过程中的地下水水化学特征。研究了32个非地热,地热和地表样品的水文地球化学特征。根据Na-K-Mg地热法,在Germencik油田中,地热储层的平均温度计算为150-240?C。 Germencik地​​热流体的水化学特征不同于非地热流体,主要是Na-Cl-HCO_(3)型地热流体,而非地热流体主要是Ca-Mg-HCO_(3)-SO_(4)型。地热流体中一些微量元素的含量很高,很可能源于长时间的水-岩相互作用,反映了流动路径和停留时间的信号。质量平衡方法用于根据B,Cl和Na的浓度计算地热流体与非地热流体之间的混合比。 Germencik油田的显着特征是地热流体上升而上覆的非地热流体。在Germencik中,从深部热源演化而来的第四纪含水层中储存的水量很低(非地热井中地热流体的含量为0.5-40%)。地热利用与非地热流体之间的混合是由地下水利用实践引起的,并且在活动断裂附近增加。浅层地下水成分的灌溉被认为是低温地热流体的涌入。

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