南薇西盆地烃源岩特征及热演化史

    Characteristics and thermal evolution of source rocks in the Nanweixi Basin

    • 摘要: 南薇西盆地是南海南部新生代陆缘张裂盆地,尚处于勘探初期,研究程度较低。本文利用钻井和综合地球物理资料,基于盆地构造-沉积格架、地层埋藏史及古地温场模型,研究了盆地内烃源岩特征及其热演化史。研究结果表明:南薇西盆地发育渐新统和下中新统泥质烃源岩和煤系烃源岩,有机质丰度可达中等—好,有机质类型主要为Ⅱ—Ⅲ型;渐新统烃源岩发育于陆相湖泊偏氧化沉积环境,下中新统烃源岩发育于海陆过渡相沉积环境,有机质均为混合来源,且以陆源高等植物为主;盆地内主力烃源岩为上始新—下渐新统,上渐新统为次要烃源岩,下中新统烃源岩成熟度较低,生烃贡献较小。盆地内4个主体坳陷热演化程度差异较大,西北坳陷和南部坳陷烃源岩的热演化程度高于其余2个坳陷,结合地震相和周边地区类比预测烃源岩的厚度分析认为,中部坳陷的中部和南部坳陷的东北部是有利的烃源岩发育区;综合考虑烃源岩、储层、火成岩等因素的影响,盆地有利远景区为南部坳陷及其紧邻的南部隆起。

       

      Abstract: The Nanweixi Basin is a Cenozoic continental margin rift basin in the southern South China Sea. Currently, the in exploration is in early stages and related studies on its source rocks and thermal evolution are nil. Using drilling and integrated geophysical data based on the structural-sedimentary framework, burial history, and paleo-geothermal model, the characteristics and thermal evolution history of source rocks in the basin were investigated. Results indicate that the Oligocene and Lower Miocene argillaceous source rocks and coal-bearing source rocks were developed in the Nanweixi Basin, and the organic matter abundance ranges from moderate to good in mainly types II-III. The Oligocene source rocks are continental lake facies with relatively oxidizing conditions, while the Lower Miocene source rocks are marine-continental transitional facies. The organic matters in both cases are in mixed origin predominantly from terrestrial higher plants. The thermal evolution history study revealed that the primary source rocks in the basin are the Upper Eocene-Lower Oligocene, flowed by the Upper Oligocene. The Lower Miocene source rocks are in low maturity and contributed slightly to the hydrocarbon generation. The thermal evolution degrees of source rocks vary significantly among four main depressions of the basin, of which the northwestern and southern depressions have higher thermal evolution levels. Source rock thickness was estimated using seismic facies analysis and regional analogy. Results suggest that the central part of the Central Depression and northeastern part of the Southern Depression are favorable for source rock development. Integrated assessment of source-reservoir-igneous rock systems indicated that the most promising exploration targets lie in the Southern Depression and the adjacent Southern Uplift.

       

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