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    中国百强科技报刊

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    中国高校百佳科技期刊

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    Volume 39 Issue 9
    Sep.  2014
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    Article Contents
    Zhao Baofeng, Chen Honghan, Kong Lingtao, Wang Qianru, Liu Rui, 2014. Vertical Migration System and Its Control on Natural Gas Accumulation in Yinggehai Basin. Earth Science, 39(9): 1323-1332. doi: 10.3799/dqkx.2014.114
    Citation: Zhao Baofeng, Chen Honghan, Kong Lingtao, Wang Qianru, Liu Rui, 2014. Vertical Migration System and Its Control on Natural Gas Accumulation in Yinggehai Basin. Earth Science, 39(9): 1323-1332. doi: 10.3799/dqkx.2014.114

    Vertical Migration System and Its Control on Natural Gas Accumulation in Yinggehai Basin

    doi: 10.3799/dqkx.2014.114
    • Received Date: 2014-03-07
    • Publish Date: 2014-09-01
    • Thermal fluid activity controlled by vertical migration system is one of major geological characteristics in the Yinggehai Basin, which contributes to special hydrocarbon accumulation processes. Combined with a comprehensive interpretation of seismic section, 3D property parameter extractions and thin section observation, The elements of the vertical migration system are analyzed and the diffused and migration overpressure are quantitatively calculated by PetroMod v11 2D software in the paper. It is concluded that. diapir-associated fractures and hydraulic fractures are two main elements of vertical migration system in the basin. The processes vary vertically, with deep migration mainly controlled by hydraulic fractures while the shallow one mainly controlled by diapir-associated fractures in Dongfang area. Fluid activity pierces through the overpressure compartment vertically leading to the diffused overpressure surface being uplifted about 2 000 m in the center of the Yinggehai Basin. 90% of the reservoir remaining pressure comes from migration overpressure at about 3 000 m of the Huangliu Group at present. (3) There are two potential nature gas accumulation zones in the basin, including a top-compartment conductive pressure zone and in-compartment diffused-conductive overpressure zone. As the nature gas reservoir is controlled by hydraulic fracture migration system and has the advantage of being close to the hydrocarbon source kitchen and effective migration, the in-compartment diffused-conductive overpressure zone is the most potential nature gas accumulation zone in the basin.

       

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