Coupling relationship between reservoir diagenesis and hydrocarbon accumulation in Lower Cretaceous Yingcheng Formation of Dongling, Changling fault depression,Songliao Basin, Northeast China

被引:1
作者
Yun-qian Lu [1 ,2 ,3 ]
You-lu Jiang [3 ]
Wei Wang [3 ]
Jian-feng Du [4 ]
Jing-dong Liu [3 ]
机构
[1] Guangzhou Marine Geological Survey, China Geological Survey, Ministry of Natural Resources
[2] Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou)
[3] School of Geosciences, China University of Petroleum
[4] Sinopec Northeast Oil-Gas Branch Company
关键词
D O I
暂无
中图分类号
P618.13 [石油、天然气];
学科分类号
0709 ; 081803 ;
摘要
The Lower Cretaceous Yingcheng Formation in the southern Songliao Basin is the typical tight oil sandstone in China. In order to better predict the petrophysical properties of the tight sandstone reservoirs in the Lower Cretaceous Yingcheng Formation, Songliao Basin, Northeast China, the diagenesis and porosity evolution was investigated using a suite of petrographic and geochemical techniques including thin section analysis, scanning electron microscopy, mercury intrusion and fluid inclusion analysis, on a set of selected tight sandstone samples. Combined with the histories of burial evolution, organic matter thermal evolution and hydrocarbon charge, the matching relationship between reservoir porosity evolution and hydrocarbon accumulation history is analyzed. The result showed that the tight sandstone reservoirs characterized of being controlled by deposition, predominated by compaction, improved by dissolution and enhanced by cementation. The hydrocarbon accumulation period was investigated using a suite of hydrocarbon generation and expulsion history, microfluorescence determination and temperature measurement technology. According to the homogenization temperature of the inclusions and the history of burial evolution, Yingcheng Formation has mainly two phases hydrocarbon accumulation. The first phase of oil and gas is charged before the reservoir is tightened, the oil and gas generated by Shahezi source rocks enter the sand body of Yingcheng Formation, influenced by the carrying capability of sand conducting layer, oil and gas is mainly conducted by the better properties and higher connectivity sand body and enriched in the east, which belongs to the type of densification after hydrocarbon accumulation.The second phase of oil and gas charge after densification, which belongs to the type of densification before the hydrocarbon accumulation.
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页码:247 / 261
页数:15
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    王艳忠
    操应长
    葸克来
    宋国奇
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    [J]. 石油学报, 2013, 34 (06) : 1100 - 1111
  • [2] 川西坳陷须家河组二段致密砂岩储层成岩作用与孔隙演化——以大邑地区为例
    罗文军
    彭军
    杜敬安
    杜垒
    韩海臣
    刘焕
    李剑波
    唐勇
    [J]. 石油与天然气地质, 2012, 33 (02) : 287 - 295+301
  • [3] 南秦岭金龙山金矿床中砷的赋存特征及其对金沉淀的影响
    杨永春
    刘家军
    刘新会
    吴胜华
    [J]. 中国地质, 2011, (03) : 701 - 715
  • [4] 利用环境敏感粒度组分分析滩坝砂体水动力学机制的初步探讨——以东营凹陷西部沙四上滩坝砂体沉积为例
    操应长
    王健
    刘惠民
    [J]. 沉积学报, 2010, 28 (02) : 274 - 284
  • [5] 甘肃寨上金矿床成矿特征与形成机理
    刘家军
    毛光剑
    吴胜华
    王建平
    马星华
    李立兴
    刘光智
    廖延福
    郑卫军
    [J]. 矿床地质, 2010, 29 (01) : 85 - 100
  • [6] 松辽盆地东岭区块烃源岩成熟度
    崔鸣
    朱战军
    王雁冰
    孙薇
    刘锋
    汤志勇
    彭国亮
    [J]. 断块油气田, 2009, 16 (04) : 40 - 42
  • [7] Implications of pyrite geochemistry for gold mineralisation and remobilisation in the Jiaodong gold district, northeast China[J] . Stephanie E. Mills,Andrew G. Tomkins,Roberto F. Weinberg,Hong-Rui Fan.Ore Geology Reviews . 2015
  • [8] Gold-bearing arsenian pyrite and marcasite and arsenopyrite from Carlin Trend gold deposits and laboratory synthesis[J] . Michael E. Fleet,A. Hamid Mumin.American Mineralogist . 2015 (1-2)
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  • [10] Nanoscale “liquid” inclusions of As-Fe-S in arsenian pyrite[J] . Artur P. Deditius,Satoshi Utsunomiya,Rodney C. Ewing,Stephen E. Kesler.American Mineralogist . 2015 (2-3)