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Fluid inclusions as constraints in a three-dimensional hydro-thermo-mechanical model of the Paris basin, France

机译:流体包裹体作为法国巴黎盆地三维水热力学模型的约束

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Fluid inclusion homogenization temperatures and three-dimensional hydro-thermo-mechanical modelling were combined to constrain fluid flow, solute and heat transport in the Paris basin, France, focusing on the two main petroleum reservoirs i.e. the Dogger and the Triassic (Keuper) formations. The average homogenization temperatures of two-phase aqueous inclusions in different samples range from 66 °C to 88 °C in the Dogger calcite cement, from 106 °C to 118 °C in the Keuper dolomite cement and from 89 °C to 126 °C in the Keuper quartz and K-feldspar cements. The maximum homogenization temperatures for inclusions in the Keuper quartz and K-feldspar cements were 17-47 °C higher than present-day temperatures in the boreholes at similar depths. Processes that might explain higher temperatures in the past were examined through numerical simulations and sensitivity tests. A warmer climate in the Late Cretaceous-Early Tertiary resulted in a temperature rise of only 8 °C. Late Cretaceous chalk had a thermal blanketing effect that resulted in simulated temperatures as high as 15-20 °C above the present day ones. An additional 300 m deposition and subsequent erosion of chalk, not taken into account so far, has to be considered to simulate the high palaeo-temperatures recorded by fluid inclusions in both reservoirs. In view of the simulated thermal history of the basin, in the Keuper, an age of about 85 Ma is consistent with quartz/K-feldspar temperatures and an age of about 65 Ma is in agreement with the precipitation temperature of the dolomite cement. Our models suggest an age of about 50 Ma for the Dogger calcite cementation.
机译:流体包裹体的均质温度和三维水热力学模型相结合,以约束法国巴黎盆地的流体流动,溶质和热传输,重点是两个主要的石油储层,即Dogger和Triassic(Keuper)地层。 Dogger方解石水泥中两相含水夹杂物的平​​均均质温度范围为66°C至88°C,Keuper白云石水泥范围为106°C至118°C,以及89°C至126°C在Keuper石英和钾长石水泥中。在类似深度的钻孔中,Keuper石英和钾长石水泥中夹杂物的最高均化温度比当前温度高17-47°C。通过数值模拟和敏感性测试检查了过去可能解释为较高温度的过程。白垩纪-第三纪晚期的气候变暖导致温度仅升高了8°C。晚白垩世白垩具有热覆盖作用,导致模拟温度比目前的温​​度高15-20°C。到目前为止,尚未考虑额外的300 m沉积和白垩的侵蚀,以模拟两个储层中流体包裹体记录的高古温度。考虑到盆地的模拟热历史,在库珀尔地区,年龄约85 Ma与石英/钾长石温度一致,而年龄约65 Ma与白云石水泥的沉淀温度一致。我们的模型表明Dogger方解石胶结作用的年龄约为50 Ma。

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