油气复合体是地流体动力系统的物质表现形式

L. Rapatskaya
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摘要

本研究的目的是分析油气形成的流体动力学概念。本研究使用了作者对西伯利亚平台(俄罗斯)多年代油气复合体的结构、组成和厚度的数据。在油气地质区划和实际工作的基础上,通过地质、地球化学和地球物理综合研究发现的油气复合体是地流体动力系统的物质表现。任何地流体动力系统都包括生烃中心、油气运移路线、储层和圈闭类型、储集岩和储集盖层岩性组成,并受它们在地质时空上的有利组合所控制。本文提出了一个由油气生成中心生成的烃类溶液构成的普通流体动力学系统,这是沉积盆地油气源岩脱流化的典型例子。本研究首次确定了多时代地流体动力系统的要素,以多时代含油气杂岩的形式提出了它们的物质表现形式,并以不同含土和含气地区的单个矿床为例分析了烃类成分。此外,还探讨了油气流体可能的生成中心及其运移途径。西伯利亚地台含油区不同年龄的油田组成和密度不同,但根据大量资料,它们属于单一成因类型,以甲烷烃为主。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oil and gas complexes as a material expression of geofluid dynamic systems
The purpose of the present research is to analyze the geofluid dynamic concept of oil and gas formation. The research uses the author's data on the structure, composition and thickness of multi-aged oil and gas complexes of the Siberian platform (Russia). The oil and gas complexes identified as a result of the integrated geological, geochemical and geophysical studies carried out under oil and gas geological zoning and operational work are presented as a material expression of geofluid dynamic systems. Any geofluid dynamic system includes hydrocarbon generation centers, oil and gas migration routes, types of reservoirs and traps, lithological composition of reservoir rocks and reservoir cap rocks Also it is controlled by a favorable combination of their appearance in geological time and space. An ordinary fluid dynamic system is presented by hydrocarbon solutions generated by oil and gas generation centers, which are examples of a trivial defluidization of oil and gas source rocks of a sedimentary basin. This study allowed to be the first who has identified the elements of multi-age geofluid dynamic systems, presented their material expression in the form of multi-age oil and gas bearing complexes as well as analyzed the composition of hydrocarbons on the example of individual deposits of variousoil and gas-bearing areas. Besides, possible generation centers of hydrocarbon fluids and ways of their migration were investigated. Oil fields of different ages of the oil and gas bearing provinces of the Siberian Platform feature different composition and density, whereas according to numerous available data, they belong to a single genetic type, which is characterized by the predominance of methane hydrocarbons.
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