中国珠江口盆地白云沙格源岩评价及油气资源分布预测

IF 7 Q1 ENERGY & FUELS
Yangdong GAO , Weilin ZHU , Guangrong PENG , Zulie LONG , Xudong WANG , Chuang SHI , Cong CHEN , Yuping HUANG , Bo ZHANG
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引用次数: 0

摘要

通过对珠江口盆地白云嵯峨地区钻井取样进行有机地球化学分析,阐明了嵯峨地区烃源岩的发育特征。通过热压模拟实验和数值模拟,重建嵯峨地热场现状,还原构造-热演化过程,预测白云嵯峨资源的类型、规模和分布。白云嵯峨以发育古近纪浅湖源岩为特征,沉积于微氧化环境中。源岩主要由陆生高等植物组成,藻类也有一定贡献,是油气源岩。重建了鞍部的地热流场,其中地热梯度范围为(3.5-5.2)°C/100 米,总体呈由西北向东南递增趋势,不同子鞍部的地热梯度差异显著。白云沙格自新生代以来经历了两个不同时期的扩展过程,即始新世和中新世。这两个时期的升温和增温事件,加速了源岩的成熟和演化。古基性热流值主体在 13.82 Ma 达到最高。盆地模拟结果表明,白云主副岩的源岩成熟度明显高于其他副岩。始新世文昌层目前处于高成熟至超成熟阶段,而始新世恩平层已达到成熟至高成熟阶段。岩石热模拟实验表明,文昌层浅湖相泥岩具有较好的角质裂解产气潜力,产气量高,气窗期长。恩平地层浅湖相泥岩具有较好的轻油生成能力,后期具有角质裂解气生成能力。恩平地层浅湖泥岩的产气量小于文昌地层浅湖泥岩和恩平地层三角洲含煤泥岩。数值模拟结果表明,白云主副岩体源岩生成油气较早,油气生成强度明显高于其他副岩体,平均约为 1 200×104 t/km2。油气资源主要分布在白云主副套,主源岩分布在文昌层第三、四系。选取四个有利区划分评价迁移聚集单元:番禺 30 号鼻状构造带、流花 29 号鼻状隆起带和荔湾 3 号鼻状隆起带、白云东陷缓坡带、白云 1 号低隆起带。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of source rocks and prediction of oil and gas resources distribution in Baiyun Sag, Pearl River Mouth Basin, China
By conducting organic geochemical analysis of the samples taken from the drilled wells in Baiyun Sag of Pearl River Mouth Basin, China, the development characteristics of hydrocarbon source rocks in the sag are clarified. Reconstruct the current geothermal field of the sag and restore the tectonic-thermal evolution process to predict the type, scale, and distribution of resources in Baiyun Sag through thermal pressure simulation experiments and numerical simulation. The Baiyun Sag is characterized by the development of Paleogene shallow lacustrine source rocks, which are deposited in a slightly oxidizing environment. The source rocks are mainly composed of terrestrial higher plants, with algae making a certain contribution, and are oil and gas source rocks. Current geothermal field of the sag was reconstructed, in which the range of geothermal gradients is (3.5–5.2) °C/100 m, showing an overall increasing trend from northwest to southeast, with significant differences in geothermal gradients across different sub-sags. Baiyun Sag has undergone two distinct periods of extensional process, the Eocene and Miocene, since the Cenozoic era. These two periods of heating and warming events have been identified, accelerating the maturation and evolution of source rocks. The main body of ancient basal heat flow value reached its highest at 13.82 Ma. The basin modelling results show that the maturity of source rocks is significantly higher in Baiyun main sub-sag than that in other sub-sags. The Eocene Wenchang Formation is currently in the stage of high maturity to over maturity, while the Eocene Enping Formation has reached the stage of maturity to high maturity. The rock thermal simulation experiment shows that the shallow lacustrine mudstone of the Wenchang Formation has a good potential of generating gas from kerogen cracking with high gas yield and long period of gas window. Shallow lacustrine mudstone of the Enping Formation has a good ability to generate light oil, and has ability to generate kerogen cracking gas in the late stage. The gas yield of shallow lacustrine mudstone of the Enping Formation is less than that of shallow lacustrine mudstone of the Wenchang Formation and the delta coal-bearing mudstone of the Enping Formation. The numerical simulation results indicate that the source rocks of Baiyun main sub-sag generate hydrocarbons earlier and have significantly higher hydrocarbon generation intensity than other sub-sags, with an average of about 1 200×104 t/km2. Oil and gas resources were mainly distributed in Baiyun main sub-sag and the main source rocks are distributed in the 3rd and 4th members of Wenchang Formation. Four favorable zones are selected for the division and evaluation of migration and aggregation units: No.
Panyu 30 nose-shaped structural belt, No.
Liuhua 29 nose-shaped uplift belt and Liwan 3 nose-shaped uplift belt, No.
gentle slope belt of Baiyun east sag, and No.
Baiyun 1 low-uplift.
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