首页> 外文会议>Workshop on Geothermal Reservoir Engineering >Occurrences of Clay Minerals in Permeable Fracture Zones in the Granitic Basement of Geothermal Wells at Rittershoffen, France
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Occurrences of Clay Minerals in Permeable Fracture Zones in the Granitic Basement of Geothermal Wells at Rittershoffen, France

机译:法国Rittershoffen的地热井的透气骨折区粘土矿物的出现

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Two geothermal wells, GRT-1 and GRT-2, were drilled in a granite at Rittershoffen (Alsace, France), in the Upper Rhine Graben, in order to exploit the geothermal resource at the sediment-basement reservoir. Brine circulations occur in a permeable fracture network and lead to hydrothermal alteration. The goal of the study is to characterize the hydrothermal alteration associated with permeable fracture zones in Rittershoffen. As clay minerals are very reactive to hydrothermal alteration and could be good indicator to past and present circulations. A special attention has been paid to the textural, structural and chemical properties of these minerals. The clay fractions (<5 μm) were analyzed in fifty cuttings samples selected around permeable fracture zones in order to analyze the microstructural properties of clays from X-Ray Diffraction and the chemical composition of clays from Scanning Electron Microscope coupled with EDS. Chloritization (ferromagnesian chlorites) and sericitization (well crystallized illite) associated with pervasive alteration are observed along wells. Iron-rich chloritic materials were observed in fracture fillings as well as illitic materials enriched in poorly crystallized illite and I/S mixed layers (<10% of smectite) related to hydrothermal alteration as evidenced in both wells in permeable fracture zones. The heterogeneous assemblages of I/S mixed layers and the small-size of illite crystallites could be a response to an abrupt change of physical and chemical conditions such as the mixing of an oversaturated ascending geothermal fluid with a cooler fluid favoring nucleation of metastable phases. The intense illitization associated with fluid circulations may lead to a total replacement of chloritic materials as observed in the major permeable fracture zone of GRT-1 and a reduction of the natural permeability. The well GRT-2 presents four permeable fracture zones in the granitic basement with a good natural permeability probably because they are less affected by illitization.
机译:两个地热井,GRT-1和GRT-2在Rittershoffen(阿尔萨斯,法国)的花岗岩中钻探,以利用沉积物地下储层的地热资源。盐水循环发生在可渗透的骨折网络中并导致水热改变。该研究的目标是表征与Rittershoffen的渗透性骨折区域相关的水热改变。由于粘土矿物对水热改变非常有反应,并且可能是过去和目前循环的良好指标。特别注意这些矿物质的纹理,结构和化学性质。分析粘土馏分(<5μm)在围绕透过骨折区域选择的五十个切屑样品中,以分析来自X射线衍射的粘土的微观结构性能和粘土的化学组成与扫描电子显微镜与EDS相连。沿井观察到与普及改变相关的氯化(铁环菌氯化物)和系列化(良好结晶的illite)。在骨折填充物中观察到富含铁的氯化物,以及富含良好结晶的岩石和I / S混合层(<10%的蒙脱石),其与水热改变有关,如渗透性骨折区域的孔中所示。 I / S混合层的异质组合和小尺寸的灯泡微晶可以是对物理和化学条件的突然变化的反应,例如过饱和上升地热流体与偏离亚稳态阶段的含量的冷却流体的混合。与流体循环相关的强烈的诽谤可能导致在GRT-1的主要渗透性骨折区域中观察到的氯化物材料的总替代,并降低了自然渗透性。井GRT-2在花岗岩地下室中呈现四个可渗透的骨折区域,可能是良好的自然渗透性,可能是因为它们的诽谤较小。

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