东海陆架盆地X凹陷中央背斜带Y构造深层低渗-特低渗天然气形成条件及成藏模式

    Formation conditions and hydrocarbon accumulation model of deep low-ultra-low permeability gas reservoirs of Y Structure in Central Anticline Belt, X Sag, East China Sea

    • 摘要: 油气勘探证实东海X凹陷中央背斜带深层低渗-特低渗砂岩储层蕴含丰富的天然气资源,而针对低渗-特低渗储层油气资源的地质认识尚不深入,极大地响应和制约了东海油气增储上产。Y构造是X凹陷最大反转背斜构造,通过对烃源岩特征、储层物性和成岩作用等的深入分析研究,并结合其热史-埋藏史,重点阐明了气藏主力产层花港组砂岩的低渗-特低渗的演化过程、低渗-特低渗化影响因素与储层成岩-成藏耦合关系。研究表明,Y构造在龙井运动反转期剥蚀量超过1 200 m,说明花港组砂岩储层13 Ma曾经历历史最大埋深与最高温度,容易形成低渗-特低渗砂岩储层。根据研究区砂岩储层致密化程度及演化特征,可以将气藏划分为花港组H3砂层组成藏未特低渗气藏、H4-H5边成藏边特低渗气藏和H8-H12先特低渗后成藏之气藏。在此基础上,结合油气成藏过程分析,建立了中央背斜带“花港组垂向两期充注、龙井组调整运移”成藏模式。

       

      Abstract: Oil and gas exploration has confirmed that the deep low-permeability to ultra-low permeability sandstone reservoirs in the central anticline of the X Sag in the East China Sea contain abundant natural gas resources. However, the geological understanding of oil and gas resources in low-permeability to ultra-low permeability reservoirs is not yet deep, which greatly responds to and restricts the increase of oil and gas reserves and production in the East China Sea. The Y structure is the largest inversion anticline structure in the X Sag. Through in-depth analysis and research on the characteristics of source rocks, reservoir properties, and diagenesis, combined with its thermal burial history, this study focuses on elucidating the evolution process of low-permeability ultra-low permeability sandstone in the main production layer of the gas reservoir, the influencing factors of low-permeability ultra-low permeability, and the coupling relationship between reservoir diagenesis and reservoir formation. Research has shown that during the reversal period of the Longjing Movement, the erosion amount of the Y structure exceeded 1 200 m, indicating that the sandstone reservoir of the Huagang Formation experienced the historical maximum burial depth and highest temperature at 13 Ma, making it easy to form low-permeability to ultra-low permeability sandstone reservoirs. According to the degree of densification and evolutionary characteristics of sandstone reservoirs in the research area, gas reservoirs can be divided into three types: the H3 sand layer of the Huagang Formation composed of low-permeability gas reservoirs, the H4-H5 reservoir formed while forming extremely low-permeability gas reservoirs, and the H8-H12 reservoir formed first and then extremely low-permeability gas reservoirs. On this basis, combined with the analysis of the process of oil and gas reservoir formation, a reservoir formation model of "vertical two-stage filling of Huagang Formation and adjustment and migration of Longjing Formation" was established in the central anticline belt.

       

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