Conceptual fracture network model of the crystalline basement of the Szeghalom Dome (Pannonian Basin, SE Hungary)

T. Tóth, E. Szűcs, F. Schubert, C. Hollós
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引用次数: 22

Abstract

Fractured fluid reservoirs are of key importance for recovering water and hydrocarbon supplies and geothermal energy, or in predicting the subsurface flow of pollutants. There are several fractured metamorphic-basement HC reservoirs in the Pannonian Basin; one of the largest among them is the Szeghalom Dome in SE Hungary. Previous production and fluid inclusion data infer that in this case several unconnected fluid regimes must coexist in the basement, making modeling of the fracture network essential. Because the representative volume of a fractured rock mass is usually too large to measure hydraulic properties directly, stochastic calculations should be carried out, which are consistent with observed deformation history and stochastic patterns. Input statistical data (orientation, length, distribution, fractal dimension for fracture seeds) were determined for amphibolite and gneiss samples representing the Szeghalom Dome. Data were measured simultaneously using binocular microscope and computerized X-ra...
Szeghalom Dome (Pannonian Basin, SE hungarian)结晶基底裂缝网络概念模型
裂缝性流体储层对于水、烃供应和地热能的回收以及污染物地下流动的预测具有重要意义。潘诺尼亚盆地发育多处裂缝性变质基底烃源岩储层;其中最大的圆顶之一是匈牙利东南部的塞格哈洛姆圆顶。以前的生产和流体包裹体数据推断,在这种情况下,基底中一定存在几种未连通的流体状态,因此对裂缝网络进行建模至关重要。由于裂隙岩体的代表性体积通常较大,无法直接测量水力特性,因此需要进行随机计算,随机计算与观测到的变形历史和随机模式相一致。输入统计数据(裂缝种子的方向、长度、分布和分形维数)确定了代表塞格哈洛姆圆顶的角闪岩和片麻岩样品。采用双目显微镜和计算机X-ra同步测量数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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