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Synchrotron-Based Data-Constrained Modeling Analysis of Microscopic Mineral Distributions in Limestone

机译:基于同步加速器的石灰石微观矿物分布数据约束建模分析

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Three dimensional (3D) microscopic distributions of dolomite and calcite in a limestone sample have been analyzed with a data-constrained modeling (DCM) technique using synchrotron radiation-based multi-energy X-ray computed tomography (CT) data as constraints. In order to optimize the experimental parameters, X-ray CT simulations and DCM analysis of a numerical phantom consisting of calcite (CaCO3) and dolomite (CaMg(CO3)2) have been used to investigate the effects on the predicted results in relation to noise, X-ray energy and sample-to-detector distance (SDD). The simulation results indicate that the optimal X-ray energies are 25 and 35 keVs, and the SDD is 10 mm. The high resolution 3D distributions of mineral phases of a natural limestone have been obtained. The results are useful for quantitative understanding of mineral, porosity, and physical property distributions in relation to oil and gas reservoirs hosted in carbonate rocks, which account for more than half of the world’s conventional hydrocarbon resources. The case studied is also instructive for the applicability of the DCM methods for other types of composite materials with modest atomic number contrasts between the mineral phases.
机译:使用基于同步辐射的多能X射线计算机断层扫描(CT)数据作为约束条件,使用数据约束建模(DCM)技术分析了石灰石样品中白云石和方解石的三维(3D)微观分布。为了优化实验参数,使用了由方解石(CaCO3)和白云石(CaMg(CO3)2)组成的数字模型的X射线CT模拟和DCM分析,以研究与噪声相关的预测结果的影响,X射线能量和样品到检测器的距离(SDD)。仿真结果表明,最佳X射线能量为25和35 keVs,SDD为10 mm。已获得天然石灰石矿物相的高分辨率3D分布。这些结果有助于定量了解与碳酸盐岩中的油气储集有关的矿物,孔隙度和物理性质分布,而碳酸盐岩占世界常规油气资源的一半以上。所研究的案例对于在矿物相之间具有适度原子序数对比的其他类型复合材料的DCM方法的适用性也具有指导意义。

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