重力过程的物理学是理解阿奇莫夫矿床性质的关键

IF 0.8 Q3 ENGINEERING, PETROLEUM Georesursy Pub Date : 2023-09-30 DOI:10.18599/grs.2023.3.20
Marina V. Osipova
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引用次数: 0

摘要

本文致力于发展一种基于因果关系的方法来预测阿奇莫夫储层的性质,这些因果关系包括陆架沉积物质的来源、斜形的几何形状和冲积扇到斜坡的距离。该技术是根据物理规律开发的,即陆架边缘沉积物重力平衡的扰动条件-沉积物质开始移除的时刻和盆地底部沉积物沉积(制动)引起的锥体形成过程。该方法包括两个阶段,一步一步的理论论证和易于理解。在第一阶段,解决了由于倾斜地形的几何形状而干扰陆架沉积物重力平衡的问题。在第二阶段,考虑了叶片距离与坡度的依赖关系以及有希望目标的性质。在理论概念的基础上,总结了冲积扇特征(砂岩的性质和体积)与斜形地貌几何参数和与斜坡的距离相关的主要结论,并推导了表征有希望对象性质的复杂参数。作者开发的方法可以根据一个地层和一个或几个油田的整体前景来预测、比较和排序阿奇莫夫目标。
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Physics of gravitational processes as a key to understanding the properties of Achimov deposits
The article is devoted to the development of a methodology for predicting the properties of Achimov reservoirs based on cause-and-effect relationships such as the source of shelf sedimentary material, the geometry of clinoforms and the distance of alluvial fans to the slope. The technique was developed on the basis of physical laws, namely the conditions of disturbance of the gravitational equilibrium of sediments on the shelf edge – the moment of the beginning of the removal of sedimentary material and the process of cone formation caused by the deposition (braking) of sediments on the bottom of the basin. The methodology includes two stages for step-by-step theoretical justification and ease of understanding. At the first stage, the problem of disturbing the gravitational equilibrium of shelf sediments depending on the geometry of the clinoforms is solved. At the second stage, the problem of dependence of the distance of the blades on the slope and the properties of promising objects is considered. Based on theoretical concepts, the main conclusions about the dependence of the characteristics of alluvial fans (properties and volume of sandstone) on the geometric parameters of clinoforms and on the distance to the slope are outlined, and a complex parameter characterizing the properties of promising objects is derived. The methodology developed by the author makes it possible to predict, compare and rank Achimov objects according to their prospects both within one formation and as a whole in one or several fields.
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来源期刊
Georesursy
Georesursy ENGINEERING, PETROLEUM-
CiteScore
1.50
自引率
25.00%
发文量
49
审稿时长
16 weeks
期刊最新文献
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