Generation and estimation of overpressure from wireline logs using deterministic approaches in western Indonesia's Tertiary sedimentary basins

IF 1.9 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Agus M. Ramdhan, Stephen O'Connor
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引用次数: 0

Abstract

Many basins in Indonesia such as the North Sumatra, South Sumatra and Lower Kutai are highly overpressured. As a result, some wells have experienced drilling problems resulting in termination. In the literature, an empirical relationship such as Eaton has historically often been used to interpret pore pressure. In this paper, we take an alternative approach, one based on deterministic models.

Herein, we use Bowers’ and Dutta's equations to calculate the contributions of loading and unloading to the overall overpressure. Due to the advantages of the density log, the contributions of loading and unloading can be discriminated. By applying these methods, we suggest that in the North Sumatra Basin, unloading is caused by clay diagenesis. In the others, gas generation is significant.

The analysis also reveals that the unloading parameter (U) in the North Sumatra and South Sumatra basins is different than that of U in the Lower Kutai Basin. This suggests that mudrock in the overpressure zone in the Sumatran basins is more elastic than that in the Lower Kutai Basin, which appears to be more plastic in behaviour.

Thematic collection: This article is part of the Geopressure collection available at: https://www.lyellcollection.org/cc/geopressure

利用确定性方法从印尼西部第三纪沉积盆地的电缆测井资料中产生和估计超压
印度尼西亚的北苏门答腊、南苏门答腊和下库台等盆地都是高压盆地。因此,一些井出现了钻井问题,导致井筒终止。在文献中,历史上经常使用伊顿等经验关系来解释孔隙压力。在本文中,我们采用另一种方法,一种基于确定性模型的方法。在这里,我们使用Bowers’和Dutta方程,计算加载和卸载对总超压的贡献。由于密度测井的优点,可以区分加载和卸载的贡献。通过这些方法,我们认为北苏门答腊盆地的卸荷是由粘土成岩作用引起的。在其他国家,天然气的产生是重要的。北苏门答腊盆地和南苏门答腊盆地的卸载参数U与下库台盆地的卸载参数U不同。这表明苏门答腊盆地超压带的泥岩比下库台盆地的泥岩更具弹性,表现出更强的塑性行为。专题合集:本文是地质压力合集的一部分,可在https://www.lyellcollection.org/cc/geopressure找到
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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来源期刊
Petroleum Geoscience
Petroleum Geoscience 地学-地球科学综合
CiteScore
4.80
自引率
11.80%
发文量
28
审稿时长
>12 weeks
期刊介绍: Petroleum Geoscience is the international journal of geoenergy and applied earth science, and is co-owned by the Geological Society of London and the European Association of Geoscientists and Engineers (EAGE). Petroleum Geoscience transcends disciplinary boundaries and publishes a balanced mix of articles covering exploration, exploitation, appraisal, development and enhancement of sub-surface hydrocarbon resources and carbon repositories. The integration of disciplines in an applied context, whether for fluid production, carbon storage or related geoenergy applications, is a particular strength of the journal. Articles on enhancing exploration efficiency, lowering technological and environmental risk, and improving hydrocarbon recovery communicate the latest developments in sub-surface geoscience to a wide readership. Petroleum Geoscience provides a multidisciplinary forum for those engaged in the science and technology of the rock-related sub-surface disciplines. The journal reaches some 8000 individual subscribers, and a further 1100 institutional subscriptions provide global access to readers including geologists, geophysicists, petroleum and reservoir engineers, petrophysicists and geochemists in both academia and industry. The journal aims to share knowledge of reservoir geoscience and to reflect the international nature of its development.
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