中国西北部渤中次盆地非均衡压实引起的超压产生机理

IF 2.4 4区 工程技术 Q3 ENERGY & FUELS
Liang Shi, Zhenkui Jin, Xiao’er Zhu, Mengli Lin, Baowen Guan
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引用次数: 0

摘要

在沉积盆地中,经常会遇到深层超压情况。然而,长期以来,这些超压条件的确切起源及其形成时间的评估一直是个难题。以往的研究主要依靠定性方法来研究超压起源,导致研究结果存在很大的不确定性。本文以有效应力定律、非均衡压实、平衡深度和嵌套流体捕集容器等理论为基础,介绍了一种新的定量方法,用于确定非均衡压实引起的超压条件起源。此外,还可通过嵌套流体捕集容器理论估算超压的形成时间。该方法被成功应用于中国渤海湾盆地西北部的渤中子盆地。结果表明,渤中盆地西北部东营地层内的超压主要归因于泥岩的非平衡压实,因为泥岩的非平衡压实占砂岩压力的90%以上。此外,该地区的超压系统并不是单一的,而是由多个嵌套的相对流体捕集容器组成。应用嵌套流体捕集容器理论可以估算出超压的形成时间,但这些估算结果还需要进一步验证。需要指出的是,本文提出的方法尤其适用于构造活动相对较弱的沉积盆地。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Generation mechanism of overpressures caused by disequilibrium compaction in the northwestern Bozhong subbasin, China

Generation mechanism of overpressures caused by disequilibrium compaction in the northwestern Bozhong subbasin, China

In sedimentary basins, deep-seated overpressure conditions are frequently encountered. However, the precise origins of these overpressure conditions and the assessment of their formation times have long presented challenges. Previous studies have primarily relied on qualitative approaches to investigate overpressure origins, leading to substantial uncertainties in their findings. Based on theories such as the effective stress law, disequilibrium compaction, equilibrium depth, and nested fluid trapping containers in this paper, a new quantitative methodology is introduced for identifying the disequilibrium-compaction-induced origins of overpressure conditions. Additionally, the formation times of overpressure can be also estimated by nested fluid trapping container theory. This methodology is successfully applied to the northwestern Bozhong subbasin in the Bohai Bay Basin, China. The results indicate that the overpressure within the Dongying Formation of the northwestern Bozhong subbasin is primarily attributed to the disequilibrium compaction of mudstone, because the disequilibrium compaction of mudstone accounts for over 90% of the pressure in sandstone. Furthermore, the overpressure system in this area is not singular but comprises multiple nested relative fluid trapping containers. The application of nested fluid trapping container theory allows for an estimation of the overpressure’s formation time, although further validation of these estimates is required. It should be noted that the method proposed in this paper is particularly suited for sedimentary basins with relatively weak tectonic activity.

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来源期刊
CiteScore
5.90
自引率
4.50%
发文量
151
审稿时长
13 weeks
期刊介绍: The Journal of Petroleum Exploration and Production Technology is an international open access journal that publishes original and review articles as well as book reviews on leading edge studies in the field of petroleum engineering, petroleum geology and exploration geophysics and the implementation of related technologies to the development and management of oil and gas reservoirs from their discovery through their entire production cycle. Focusing on: Reservoir characterization and modeling Unconventional oil and gas reservoirs Geophysics: Acquisition and near surface Geophysics Modeling and Imaging Geophysics: Interpretation Geophysics: Processing Production Engineering Formation Evaluation Reservoir Management Petroleum Geology Enhanced Recovery Geomechanics Drilling Completions The Journal of Petroleum Exploration and Production Technology is committed to upholding the integrity of the scientific record. As a member of the Committee on Publication Ethics (COPE) the journal will follow the COPE guidelines on how to deal with potential acts of misconduct. Authors should refrain from misrepresenting research results which could damage the trust in the journal and ultimately the entire scientific endeavor. Maintaining integrity of the research and its presentation can be achieved by following the rules of good scientific practice as detailed here: https://www.springer.com/us/editorial-policies
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