To the issue of oil and gas potential in the decompression zones of the Dnieper-Donets depression

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引用次数: 1

Abstract

Formulation of the problem. Currently, interest in the foundation as a gas and oil field facility has increased significantly. The low efficiency of oil and gas exploration in the basement rocks is usually explained by the absence of a generally accepted hypothesis about the genesis of oil and gas and as a result of migration and accumulation of hydrocarbons. One of the main factors of accumulation is the presence of decompression zones of the foundation, as potential hydrocarbon traps. The article is devoted to the problem of identifying oil and gas bearing zones of foundation decompression. Analysis of recent research and publications. A number of scientific articles on the composition, age, structure and oil and gas potential of the foundation are analyzed. The first step in identifying decompression zones is to conduct gravimetric and magnetic surveys and apply various techniques to interpret the resulting mathematical model of the wave field pattern in order to localize the sources of its anomalies. Identification of previously unresolved parts of a common problem. In order to save money when conducting prospecting and exploration for oil and gas, the foundation proposes an improvement in the methodology for separating gas-bearing “vaulted” parts of decompression zones. Formation of the purpose of the article. The aim of the work is to establish a seismic pattern of anomalies in the geophysical fields of the base decompression zones. The object of research is the zone of decompression of the foundation on the northern side of the Dnieper-Donets depression. The subject of the study is a seismic drawing of the anomaly of the geophysical field of the gas-bearing zone of decompression of the foundation of the Rozsoshinsk structure. Report of the main material. The article analyzes a few materials to identify areas of base decompaction in various oil and gas regions. It was found that for localization of decompression zones, the Berezkin “singular points” method and the correlation method of separation of geophysical anomalies are most effective. The essence of these methods is a kind of filtering of field anomalies, where against the background of the "structural" factor, one can distinguish the "non-structural factor", i.e. decompression zone. This zone in wave fields (∆g and ∆Т) is fixed by a seismic pattern, where minima are usually fixed over hydrocarbon accumulations in relation to contouring maxima. Based on the results of the application of these methods, the structure-testing ground of the gas-bearing decompression zone is established. As an illustrative example of the successful localization of ∆g and ∆Т, data are presented on modeling the foundation softening zone in one of the oil and gas regions of the northern side of the Dnieper-Donets depression.
第聂伯-顿涅茨凹陷减压带油气潜力问题
问题的表述。目前,人们对该基金会作为天然气和油田设施的兴趣大大增加。基岩油气勘探效率低,通常是由于对油气成因缺乏普遍接受的假设,以及烃类的运移和聚集所致。成藏的主要因素之一是基底存在减压带,作为潜在的油气圈闭。本文讨论了基础减压含油气带的识别问题。分析最近的研究和出版物。对该基础的组成、年龄、构造和油气潜力等方面的科学文献进行了分析。确定减压带的第一步是进行重力和磁测量,并应用各种技术来解释波场模式的数学模型,以便定位其异常源。识别以前未解决的共同问题的部分。为了在进行油气勘探和勘探时节省资金,基金会提出了一种改进减压带含气“拱形”部分分离方法的方法。文章目的的形成。本工作的目的是建立基底减压带地球物理场异常的地震模式。研究对象为第聂伯-顿涅茨凹陷北侧的地基减压区。本研究的主题是罗索申斯克构造基底减压含气带地球物理场异常的地震图。报告的主要材料。本文通过对几种资料的分析,确定了不同油气区的基底分解区域。研究发现,对于减压带的定位,Berezkin“奇异点”法和地球物理异常分离相关法是最有效的。这些方法的本质是一种场异常的过滤,在“构造”因素的背景下,可以区分出“非构造”因素,即减压带。波场中的这个区域(∆g和∆Т)是由地震模式固定的,其中最小值通常固定在与轮廓最大值相关的油气聚集上。根据这些方法的应用结果,建立了含气减压带结构试验场。作为一个成功定位∆g和∆Т的例子,给出了在第聂伯-顿涅茨凹陷北侧的一个油气区对基础软化带进行建模的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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