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首頁» 過刊瀏覽» 2022» Vol.7» Issue(2) 155-173???? DOI : 10.3969/j.issn.2096-1693.2022.02.014
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潿西南凹陷A洼及周緣含油構造油藏地球化學性質及成藏特征
滿勇,魏琳,,鄧勇,,李文龍,,胡德勝,,馬瀟瀟,尹嘉
1 中海石油(中國)有限公司海南分公司,海口 570311 2 中國地質大學(北京)能源學院,,北京 100083
Oil geochemical and accumulation characterization in the A sag and surrounding oil-bearing structures of the Weixinan depression, Beibuwan Basin
MAN Yong, WEI Lin, DENG Yong, LI Wenlong, HU Desheng, MA Xiaoxiao, YIN Jia
1 Hainan Branch of CNOOC (China) Co. Ltd., Haikou 570311, China 2 School of Energy Resources, China University of Geosciences, Beijing 100083, China

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摘要? 通過對北部灣盆地潿西南凹陷A洼及其周緣區(qū)域不同井典型原油樣品 的地球化學特征分析,,將原油進行詳細分類和油源對比,。結合成藏期 次和輸導體系綜合分析,確立I和II類原油分別為上源巖第一期和第 二期充注,,通過砂體垂向運移至烴源巖上覆砂體,,或通過斷裂和砂體 近距離運移至A洼周緣淺層圈閉成藏。III類原油為下源巖晚期充注,, 通過構造脊和層間斷層遠距離側向運移后聚集,。該研究成果對北部灣 盆地潿西南凹陷A洼的油氣勘探突破具有一定的指導意義。
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關鍵詞 : 潿西南凹陷;油藏地球化學,;生物標志化合物,;油源對比;運移成藏,;供烴組合
Abstract

Based on geochemical characteristics analysis of crude oil samples from different typical wells in the Weixinan sag A and its surrounding areas in the Beibuwan Basin, the crude oils in this area can be divided into three types (Ⅰ, II, and III). The first type of crude oil (Ⅰ) mainly distributed in the shallow reservoirs has relatively heavier oil density, relatively lighter isotopic value, relatively lower abundance of 4-methyl sterane and lower thermal maturity. The third type of crude oil (III) mainly distributed in the deep reservoirs has relatively lower oil density, relatively heavier carbon isotopic value, relatively higher abundance of 4-methyl sterane and the highest thermal maturity. The overall geochemical characteristics of second type of crude oils (II) mainly distributed in the shallow reservoirs are in between. Most of the crude oil of the Weixinan sag A belong to class II and class III. The comparison of geochemical characteristics of source rocks samples shows that there are three sets of source rocks developing in the Weixinan Sag. The upper part source rocks that deposited in an oxidizing environment are dominated by algal input with certain contribution from terrigenous higher plants. The sedimentary environment of the middle part source rocks was more oxidized, and higher plants contributed more to its source materials. The lower part source rocks were formed in a weak reducing-oxidizing environment with large amounts of algal inputs. Oil-source correlation results show that type Ⅰ and type II oils are mainly derived from the upper part source rocks, and type III oils are chiefly derived from the lower part source rocks. Considering the comprehensive analysis of generation stages, accumulation stages, and migration pathways, this study concludes that type Ⅰ oil, which mainly derived from the first hydrocarbon charging stage of the upper part source rocks, is accumulated in the overlying reservoir by migrating upward through sand bodies. Type II oil came from the second hydrocarbon charging stage from the upper part source rocks and accumulated in traps in shallow reservoirs on the periphery of the A Sag. Type III oil was generated from the inner center of sag A and migrated along structural crests through longer migration pathways, and finally accumulated into oil reservoirs when being stopped by big faults and faults between formations. The results of this study not only are helpful to further understand the hydrocarbon accumulation and distribution, but is also significant towards the further breakthrough of petroleum exploration in sag A.

Key words: Weixinan depression; oil geochemical characterization; biomarkers; oil-source correlation; migration and accumulation characteristics; hydrocarbon supply combination
收稿日期: 2022-06-29 ????
PACS: ? ?
基金資助:中國地質大學( 北京) 基本科研業(yè)務費(35832019035),、中海油南海西部油田上產(chǎn) 2000 萬方關鍵技術研究“南海西部在生產(chǎn)油氣田提高采
收率技術研究”(CNOOC-KJ 135 ZDXM 38 ZJ) 資助
通訊作者: [email protected]
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滿勇, 魏琳, 鄧勇, 李文龍, 胡德勝, 馬瀟瀟, 尹嘉. 潿西南凹陷A洼及周緣含油構造油藏地球化學性質及成藏特征. 石油科學通 報, 2022, 02: 155-173 MAN Yong, WEI Lin, DENG Yong, LI Wenlong, HU Desheng, MA Xiaoxiao, YIN Jia. Oil geochemical and accumulation characterization in the A sag and surrounding oil-bearing structures of the Weixinan depression, Beibuwan Basin. Petroleum Science Bulletin, 2022, 02: 155-173.
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