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Mesh model building and migration and accumulation simulation of 3D hydrocarbon carrier system

机译:网格模型的建立以及3D油气载体系统的运移和聚集模拟

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Migration and accumulation simulation of oil and gas in carrier systems has always been a difficult subject in the quantitative study of petroleum geology. In view of the fact that the traditional geological modeling technology can not establish the interrelation of carriers in three dimensional space, we have proposed a hybrid-dimensional mesh modeling technology consisting of body (stratum), surfaces (faults and unconformities), lines and points, which provides an important research method for the description of geometry of sand bodies, faults and unconformities, the 3D geological modeling of complex tectonic areas, and the simulation of hydrocarbon migration and accumulation. Furthermore, we have advanced a 3D hydrocarbon migration pathway tracking method based on the hybrid-dimensional mesh of the carrier system. The application of this technology in western Luliang Uplift of Junggar Basin shows that the technology can effectively characterize the transport effect of fault planes, unconformities and sand bodies, indicate the hydrocarbon migration pathways, simulate the process of oil accumulation, reservoir adjustment and secondary reservoir formation, predict the hydrocarbon distribution. It is found through the simulation that the areas around the paleo-oil reservoir and covered by migration pathways are favorable sites for oil and gas distribution.
机译:油气在运移系统中的运移和聚集模拟一直是石油地质定量研究中的难题。鉴于传统的地质建模技术无法建立三维空间中载体的相互关系,我们提出了一种混合三维网格建模技术,包括物体(地层),表面(断层和不整合面),线和点,为描述砂体的几何形状,断层和不整合面,复杂构造区域的3D地质建模以及模拟油气运移和聚集提供了重要的研究方法。此外,我们已经改进了基于载体系统的混合维网格的3D油气运移路径跟踪方法。该技术在准gar尔盆地陆梁隆起西部的应用表明,该技术可以有效地表征断层面,不整合面和砂体的运移效果,指示油气运移路径,模拟油藏过程,储层调整和次生油藏形成。 ,预测碳氢化合物的分布。通过模拟发现,古油藏周围区域被运移通道覆盖是油气分布的有利位置。

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