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On One Precise Solution for Mobilisation Geo-physics and Geo-Mechanics of Hydrocarbons in Deformed Low-Permeable Reservoirs

机译:在变形低渗储层中烃的动员地质物理学和地质力学的一种精确解决方案

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The group of authors considers the new globally area-specific geology of the trans-Volga and cis-Ural regions. It presents the geo-physically complex studies in geo-tectonics and correlated geo-dynamics. The authors provide the model of hydro-dynamic history matching in complex structured cavernous - fractured high-amplitude reservoirs with synergy in compaction of super low-permeable skeleton of porous cell containing organo-genic clusters of productive bioherms. The paper discusses the innovative method in development with due consideration of fracturing effect development in deformed prosody of petro- migration and diagenesis. The group of authors presents the new methods in search, exploration and development of complexly-structured hydro-carbon fields of the Zhiguli dislocation in the cis-Ural region. They also present the additional complex seismic studies in the attributed of deformed synergy field with geo-physical rhythms, amplitude polarization in resolving the issues with compacted - de-compacted filtration. For complexly structured reservoirs having the deformed porosity and for adequate hydro- dynamic simulation of conjugated tectonics in fractured-cavernous-porous geo-mechanics the authors of the paper propose the complex geo-physical methods of investigation: seismic, laboratory and computer algorithmic geo-informative methods of adaptation. They also present the additional studies of vertically profiled anisotropy in geo-physically complex hydrodynamic models, in hydro-dynamic well studies, well work-over actions, multi-stage hydro-fracturing for low-permeable compacted heterogeneous, high-viscous and high water-cut oil and natural bitumen pools in due with dynamic area-specific capacity filtration properties, dual permeability - triple porosity for viscous-filtration and viscous elastic - diffusive complex development methods and stages for the production of hard-to-recover reserves.
机译:该组提交人认为跨伏尔加和CIS-URAL区域的新全球区域特定地质。它呈现了地理构造和相关地理动力学中的地理上复杂的研究。作者提供了复杂结构型海屑高幅度储层中的水力动力学历史匹配模型,其具有协调的多孔电池的多孔电池超低渗透骨架的含量的有机基础植物的有机基因簇的组成。本文讨论了在迁移和成岩作用变形韵律中断裂效应开发的发展创新方法。本集团作者介绍了CIS -UTAL区域中志柳氏脱位的复杂结构化水碳领域的搜索,探索和开发的新方法。他们还介绍了对具有地理节律的变形协同域的额外复杂地震研究,在解决压实 - 解压缩过滤的问题时振幅极化。对于具有变形孔隙率的复杂结构储层和用于骨折 - 孔隙多孔地质机械的共轭构造的足够水电动态模拟本文的作者提出了复杂的地理学研究方法:地震,实验室和计算机算法地理适应性的信息方法。他们还在地质物理复杂的流体动力学模型中展示了垂直异形各向异性的额外研究,在水力 - 动力学井研究中,良好的工作作用,多阶段水力压裂,用于低可渗透的压实异质,高粘性和高水位-Cut油和天然沥青池在由于动态区域特异性容量过滤性能,双渗透率 - 用于粘性过滤和粘性弹性的三孔隙率和粘性弹性 - 扩散的复杂开发方法和阶段,用于生产难以回收的储备。

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