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The geothermal field below the city of Berlin, Germany: Results from structurally and parametrically improved 3D Models

机译:德国柏林市下面的地热场:在结构上和参数化改善的3D模型中的结果

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The objective of this study is to analyze the influence of geological structure and parameterization of Cenozoic sediments on the geothermal field as calculated by 3D thermohydraulic numerical simulations for the subsurface of Berlin, Germany. The results show, that a mostly continuous Rupelian aquitard effectively hampers forced convective cooling of the deep subsurface (≥ 1km) but for localities where the unit is discontinuous. New parameterization methods for hydraulic conductivities lead to a stronger coupling of the hydraulic boundary condition and forced convective cooling. Newly derived thermal conductivities result in a stronger thermal blanketing effect for the Post-Permian sediments than previously estimated.
机译:本研究的目的是分析德国柏林地下3D热液数值模拟的地热场地质结构和新生代沉积物的影响。结果表明,大多数连续的卢比山脉有效地妨碍了强迫对流冷却深层地下(≥1km),但是对于该单位是不连续的地方。液压传导性的新参数化方法导致液压边界条件和强制对流冷却的较强耦合。新衍生的热导体导致比先前估计的后二叠型沉积物的热覆盖效果更强。

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