Multi-Scaled Structural Spatio-Temporal Analytics for the Evolution of Geology According to A. Einstein Formula

V. Popkov, A. Shterenberg, V. Gusev, A. Tyutyaev
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Abstract

The authors present the scientific grounding of a new theoretical concept of geo-exploration work, of geo-physical and geo-mechnical models for the unconventional technically recoverable hydrocarbon reserves of the Cis-Ural region. The paper describes heterogeneous balanced volumetric geo-mechanical model for the structural massif of mountain rock post-sedimentation in view of geo-physical synergy and petro-migration. The paper also provides a set of additional studies for seismic, tectono-physical, geological, geo-physical information in a process of search and exploration of hydrocarbon fields and large-scaled construction of surface and subsurface equipment, well drilling and their completion, as well as geo-dynamic studies, geo-hydrogeological simulation of their development stages. The authors have studied the change in stress-deformed status of mountain massifs and the wells in a process of their subsurface operation. They also hae studied the stress fields for the large-scaled reef formations in Zhiguli dislocation and the Cis-Ural region. The authors have scientifically proved the inertia-capillary law of movement conservation (by Darcy-Stokes) and stress-deformed status of square compaction and structural packs of geo-physical rhythms during filtration, petro-migration diffusion and mass-transfer (Bessel’s ray-path and Gaussian distribution). Basing upon the solution of equations related to number of movements (of Navier-Stokes type) for the deformed porous media and conjugated seismic emission of various mass transfer structures the group of authors in a form of a system, have combined filtration as per Darcy and diffusion of structural-topological dislocation of impulses as per Euler with mobile neo-tectonics in porous-cavernous-fractured dissipative accumulation of spectral-phase sedimentation and accumulation of hydrocarbons.
基于爱因斯坦公式的地质演化多尺度结构时空分析
提出了Cis-Ural地区非常规技术可采油气储量地球物理和地球力学模型的地质勘探新理论概念的科学依据。从地球物理协同作用和石油运移的角度出发,建立了山岩构造体沉积后非均质平衡体积地球力学模型。在油气田勘探、大规模地上、地下设备建设和钻井完井过程中,对地震、构造物理、地质、地球物理等信息进行了补充研究,并对其发展阶段进行了地球动力学研究和地质水文地质模拟。研究了山体及其井在地下开采过程中应力变形状态的变化。他们还研究了直古里位错和顺乌拉尔地区大型礁群的应力场。科学地证明了惯性-毛细运动守恒定律(达西-斯托克斯)和地球物理节律在过滤、石油运移扩散和传质过程中的方形压实和构造包的应力变形状态(贝塞尔射线路径和高斯分布)。基于变形多孔介质的运动数(纳维-斯托克斯型)方程的解和各种传质结构的共轭地震发射,作者小组以一个系统的形式,将达西过滤和欧拉脉冲的结构拓扑位错扩散与谱相沉积的多孔-洞穴-裂缝耗散聚集和碳氢化合物聚集的移动新构造结合起来。
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