Establishment of Geological Knowledge Database for Meandering River Reservoirs in Offshore Oilfields With Large Well Spacing

Xiaoming Ye, Chunliang Huo, Jianmin Yang, Jing Xu
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Abstract

Based on quantitative logging microfacies identification, seismic constraint facies map compilation and horizontal wells architecture analysis, the reservoir geologic knowledge database of different grades configuration unit was established for meandering river reservoirs of Lower Minghuazhen Formation in Q oilfield. The results show that the average point bar sand body width is 360-783 m, the average sand body thickness is 4.0-8.5 m, the ratio of width to thickness mainly distributed in 40-100. Average lateral accretion layers dip is 5.7°, lateral accretion layers horizontal interval mainly distributed in 70-200 m. On the basis of reservoir geological knowledge database, a fine geological model was established together with sequential indicator method and equivalent characterization method. Base on the reservoir geologic knowledge database and geological modeling results, 130 adjustment wells were successfully deployed and implemented at the comprehensive adjustment process of Q oilfield, these wells made an obvious oil production increase effect.
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海上大井距油田曲流河油藏地质知识库的建立
在定量测井微相识别、地震约束相图编制和水平井构型分析的基础上,建立了Q油田曲流河下明化镇组储层不同等级配置单元的储层地质知识库。结果表明:点坝砂体平均宽度为360 ~ 783 m,砂体平均厚度为4.0 ~ 8.5 m,宽厚比主要分布在40 ~ 100之间;侧向吸积层平均倾角为5.7°,侧向吸积层水平间距主要分布在70 ~ 200 m。以储层地质知识库为基础,结合序贯指示法和等效表征法,建立了精细地质模型。根据油藏地质知识库和地质建模结果,在Q油田综合调整过程中成功部署并实施了130口调整井,取得了明显的增产效果。
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