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首頁» 過刊瀏覽» 2020» Vol.5» Issue(2) 148-160???? DOI : 10.3969/j.issn.2096-1693.2020.02.015
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五峰—龍馬溪組海相頁巖生—儲耦合演化及對頁巖氣富集的控制效應(yīng)
楊威,蔡劍鋒,,王乾右,,崔政劼,崔哲,,徐亮,,李蘭,顧小敏,,王井伶
1 中國石油大學(北京)油氣資源與探測國家重點實驗室, 北京 102249
The controlling effect of organic matter coupling with organic matter porosity on shale gas enrichment of the Wufeng-Longmaxi marine shale
YANG Wei, CAI Jianfeng, WANG Qianyou, CUI Zhengjie, CUI Zhe, XU Liang, LI Lan, GU Xiaoming, WANG Jingling
1 State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum-Beijing, Beijing 102249, China

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摘要? 四川盆地五峰—龍馬溪組海相頁巖熱演化程度高,,含氣性好,,有機質(zhì)與有機質(zhì)孔隨演化程度升高演化機 制具有耦合性,這對盆內(nèi)不同地區(qū)頁巖氣藏含氣量具有控制作用,。為揭示有機質(zhì)與有機質(zhì)孔在不同演化階段下 的協(xié)同演化對頁巖氣富集成藏的控制效應(yīng),,選取了與研究區(qū)具有相似地質(zhì)地化特征的下馬嶺組海相頁巖開展了 高溫高壓熱模擬實驗來模擬頁巖生烴演化過程?;诤O囗搸r生烴熱模擬實驗烴氣產(chǎn)率與碳同位素序列特征,, 厘定了海相頁巖滯留原油接替干酪根生氣的成熟度下限RO為 1.5%與生氣高峰期(RO為 2.5%~3.4%)。開展了下馬 嶺組與五峰—龍馬溪組頁巖掃描電鏡分析,,基于有機質(zhì)定性識別與孔隙定量提取,,以有機質(zhì)形態(tài)學參數(shù)及等效 圓直徑、周長面積比等孔隙結(jié)構(gòu)參數(shù)分析表明:海相頁巖在低成熟階段以原始干酪根有機質(zhì)為主,,有機質(zhì)主要 為團塊狀,,有機質(zhì)內(nèi)主要發(fā)育微孔,孔隙連通性差,,無機礦物粒間孔殘余,;高成熟階段原始干酪根在總有機質(zhì) 中占比逐漸減少,遷移有機質(zhì)占比上升,,最高達 80%,,為早期干酪根形成的原油充注于殘存的粒間孔形成,遷 移有機質(zhì)內(nèi)普遍發(fā)育焦瀝青孔,,等效圓直徑,、周長面積比等孔隙結(jié)構(gòu)特征參數(shù)表明焦瀝青孔發(fā)育良好,孔徑較 大,,孔隙形態(tài)為圓狀,、長橢圓狀,連通性好,。有機質(zhì)與有機質(zhì)孔的耦合演化保證了晚期海相頁巖氣的富集成藏,, 低演化階段干酪根與殘余粒間孔提供了液態(tài)烴的物質(zhì)基礎(chǔ)與充注空間,高演化階段大量存在的遷移有機質(zhì)與焦 瀝青孔提供了成氣母質(zhì)與儲氣空間,,有利于頁巖氣富集成藏,。
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關(guān)鍵詞 : 海相頁巖;五峰—龍馬溪組,;生烴時機;有機質(zhì),;有機質(zhì)孔
Abstract
The Wufeng-Longmaxi marine shale of the Sichuan Basin is characterized by a high degree of thermal evolution and good gas bearing properties. The evolution mechanism of organic matter and organic matter porosity is coupled with the increase of the degree of evolution, which has a controlling effect on the gas content of shale gas reservoirs in different areas of the Sichuan Basin. In order to reveal the controlling effect of the co-evolution of organic matter and organic matter porosity at different evolutionary stages on the shale gas enrichment and accumulation, a high-temperature and high-pressure thermal simulation experiment was carried out on samples of the Xiaming marine shale due to its similar geological and geochemical characteristics to the Wufeng-Longmaxi shale in the study area. The experiment was targeted at simulating the hydrocarbon generation process of marine shale. Based on the hydrocarbon gas productivity and characteristics of carbon isotope sequences of marine shale in the hydrocarbon-generation thermal simulation experiment, the initial maturity of cracked gas in retained oil has been determined as 1.5%, and at the peak stage it was 2.5%~3.4%. We have carried out scanning electron microscopy (SEM) examination of samples of the Xiamaling and Wufeng-Longmaxi marine shales, based on organic matter qualitative identification and organic matter porosity quantitative extraction. The results of parameter analysis including organic matter morphological parameters and pore   
structure parameters (equivalent circle diameter and perimeter area ratio) show that original kerogen dominates the major part of the marine shale organic matter in the low maturity stage. This has the morphology of isolated, micropores mainly developed on the organic matter with poor pore connectivity and inorganic mineral intergranular porosity is usually remnant; At the highly mature evolutionary stage, the proportion of original kerogen in all organic matter is gradually reduced, while the percentage of migrated organic matter formed by crude oil filling in remaining intergranular pores tends to increase, up to 80%. Asphalt porosity is widely developed in migrated organic matter, the equivalent diameter and perimeter area ratio parameter of pore structure shows that asphalt porosity is well developed with relatively large pore diameters and round to long-oval pore morphology as well as good pore connectivity. The coupling evolution of organic matter and organic matter porosity ensures the enrichment and accumulation of marine shale gas at the high maturity evolutionary stage. Original kerogen provides the material basis and the residual intergranular pores provide the filling space for the liquid hydrocarbon at the low evolution stage. The migrated organic matter provides materials for gas generation and organic matter pores provide the storage space at the high evolution stage, which  
is conducive to marine shale gas accumulation.  
 

 

Key words: marine shale; Wufeng-Longmaxi Formation; timing of hydrocarbon generation; organic matter; organic matter porosity
收稿日期: 2020-06-30 ????
PACS: ? ?
基金資助:中國石油大學( 北京) 拔尖人才科研啟動基金(2462017BJB07),、國家自然科學青年基金(41602233),、國家科技重大專項“五峰—龍馬溪組
富有機質(zhì)頁巖儲層精細描述與頁巖氣成藏機理”(2017ZX05035002-007)、國家科技重大專項“不同類型頁巖氣生氣機理與富集規(guī)律研
究”(2016ZX05034001-005) 共同資助
通訊作者: [email protected]
引用本文: ??
??YANG Wei, CAI Jianfeng, WANG Qianyou, CUI Zhengjie, CUI Zhe, XU Liang, LI Lan, GU Xiaoming, WANG Jingling. The controlling effect of organic matter coupling with organic matter porosity on shale gas enrichment of the Wufeng-Longmaxi marine shale. Petroleum Science Bulletin, 2020, 02: 148-160.
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