中国塔里木盆地下寒武统砾岩的烃排出机制

IF 1.4 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
Geological Journal Pub Date : 2024-06-05 DOI:10.1002/gj.4981
Junqing Chen, Xiaobin Yang, Xingang Zhang, Xiongqi Pang, Jinyang Luo, Bo Pang, Fujie Jiang, Haijun Yang, Jiarun Li, Kanyuan Shi
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引用次数: 0

摘要

塔里木盆地地台的油气来源一直存在争议。下寒武统尤尔图斯统和西大山统-西山布拉克统砾岩源岩是盆地中一组重要的油源系列。根据物质守恒原理,本文计算了源岩的烃排出量。利用相态烃排出量表征模型,本文重建了源岩烃排出相态的演化过程。根据碳氢化合物排出动力学表征模型,评估了各种力对碳氢化合物排出的相对贡献。建立了塔里木盆地下寒武统弧质源岩烃排出地质模型。结果表明,这组源岩可作为盆地的主要源岩。塔里木盆地下寒武统镁质源岩的碳氢化合物排出过程可分为三个阶段。在第一阶段,烃类排出阶段以水溶阶段和扩散阶段为主。粘土矿物转化为脱水和扩散力是油气排出的主要动力。在第二阶段,油气排出呈现多相、多动力共存的特点。在第三阶段,油气排出的相态主要是自由相。毛细管力差和流体岩石的热膨胀力是油气排出的主要驱动力。本文的研究成果可以加深对套源岩油气排出机理的认识,进而指导油气勘探。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hydrocarbon expulsion mechanism of Lower Cambrian argillaceous source rocks in the Tarim Basin, China

The source of oil and gas in the Tarim Basin's platform has always been controversial. The Lower Cambrian Yurtusi Formation and the Xidashan Formation–Xishanbulak Formation argillaceous source rocks are an important set of oil source series in the basin. Based on the principle of conservation of matter, this paper calculates the hydrocarbon expulsion amount of the source rock. Using a phase state hydrocarbon expulsion amount characterization model, the paper reconstructs the evolution process of the hydrocarbon expulsion phase state of the source rock. According to the characterization model of hydrocarbon expulsion dynamics, the relative contribution of each force to hydrocarbon expulsion is evaluated. The hydrocarbon expulsion geologic model of argillaceous source rocks in the Lower Cambrian in the Tarim Basin is established. The results show that this set of source rocks can serve the main source rocks in the basin. The hydrocarbon expulsion of the Lower Cambrian argillaceous source rocks in the Tarim Basin can be divided into three stages. In the first stage, the hydrocarbon expulsion phase is dominated by the water-soluble and diffusion phases. The conversion of clay minerals into dehydration and diffusion forces is the main driving force for the hydrocarbon expulsion. In the second stage, the oil and gas expulsion present the characteristics of multiphase and multidynamic coexistence. In the third stage, the phase state of oil and gas expulsion is mainly free phase. The capillary force difference and the thermal expansion force of the fluid rock are the main driving forces for oil and gas expulsion. The research results of this paper can deepen the understanding of the hydrocarbon expulsion mechanism of the set of source rocks, and then guide oil and gas exploration.

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来源期刊
Geological Journal
Geological Journal 地学-地球科学综合
CiteScore
4.20
自引率
11.10%
发文量
269
审稿时长
3 months
期刊介绍: In recent years there has been a growth of specialist journals within geological sciences. Nevertheless, there is an important role for a journal of an interdisciplinary kind. Traditionally, GEOLOGICAL JOURNAL has been such a journal and continues in its aim of promoting interest in all branches of the Geological Sciences, through publication of original research papers and review articles. The journal publishes Special Issues with a common theme or regional coverage e.g. Chinese Dinosaurs; Tectonics of the Eastern Mediterranean, Triassic basins of the Central and North Atlantic Borderlands). These are extensively cited. The Journal has a particular interest in publishing papers on regional case studies from any global locality which have conclusions of general interest. Such papers may emphasize aspects across the full spectrum of geological sciences.
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