澳大利亚西北大陆架外侧浏览盆地火成岩的岩石物理特征:勘探钻井前预测火成岩序列的意义

Kosuke Tsutsui, S. Holford, N. Schofield, M. Bunch, Rosalind King, Ken McClay
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摘要

浏览盆地是澳大利亚的主要油气区之一,近几十年来在此发现了包括 Ichthys 和 Prelude 油田在内的重要油气资源,其产量占 2019-2020 年澳大利亚液化天然气累计产量的 15%。该断裂盆地拥有大量中生代侵入岩和喷出火成岩,这些岩石已从油井和地震数据中得到确认,并被认为是该地区勘探和生产活动面临的主要挑战之一。这些岩石对石油勘探的影响体现在,有许多油井在目标区段内和附近遇到了未曾预料到的或比预料中更厚的火成岩单元。因此,本研究旨在记录这种意外情况的原因,并开发在浏览盆地和其他含有火成岩的裂谷环境中进行钻探之前预测火成岩单元出现情况的能力。通过整合岩石物理和地震反射数据,对多口非商业勘探井进行了案例研究,尤其侧重于火成岩最为普遍的盆地外侧。我们的研究强调了了解盆地中火成岩的岩石物理、空间和化学异质性的重要性,以解释火成岩的成因和分布,从而在勘探和开发活动之前预测火成岩的出现。
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Petrophysical characteristics of igneous rocks in the outboard Browse Basin, North West Shelf of Australia: Implications for predicting igneous sequences prior to exploration drilling
The Browse Basin is one of Australia's major hydrocarbon provinces, where significant discoveries have been made in recent decades including the Ichthys and Prelude fields, which accounted for ∼15% of the cumulative Australian LNG production in 2019-2020. This rift basin hosts extensive Mesozoic intrusive and extrusive igneous rocks, having been identified from both well and seismic data, and which are recognised as one of the key challenges for exploration and production activities in this region. Their impact on petroleum exploration is demonstrated by the number of wells which encountered unpredicted or thicker than expected igneous rock units both within and adjacent to target sections. This study therefore aims to document the reasons of such unexpectedness, and to develop capability to predict the occurrence of igneous rock units prior to drilling in the Browse Basin and other rift settings that contain igneous rocks. Multiple case studies of uncommercial exploration wells are developed by integrating petrophysical and seismic reflection data, focussing in particular along the outboard part of the basin where igneous rocks are most prevalent. Our study highlights the importance of understanding petrophysical, spatial and chemical heterogeneities of igneous rocks in basins to explain their emplacement and distribution, and thereby predict their occurrence prior to exploration and development activities.
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