首页> 外文期刊>Journal of Petroleum Science & Engineering >Typical disequilibrium compaction caused overpressure of Paleocene Dongying Formation in northwest Liaodongwan Depression, Bohai Bay Basin, China
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Typical disequilibrium compaction caused overpressure of Paleocene Dongying Formation in northwest Liaodongwan Depression, Bohai Bay Basin, China

机译:渤海湾盆地辽东湾De陷西北部的典型不平衡压实引起古新世东营组超压

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摘要

Bohai Bay Basin is an important petroliferous basin in China. Petroleum potential in Liaodongwan Depression of offshore Bohai Bay Basin has been proved by previous exploration and production, and overpressures were encountered. Summarized by the DST measurements and mud weight data of over 60 wells in Liaodongwan Depression, the abnormally high pressures preserved in Paleocene Dongying (Ed) Formation distribute over the entire depression and could reach as high as 64.2 MPa around the depth of 3420 m. Through the well logs analysis, typical corresponding characteristics to disequilibrium compaction can be found: higher in acoustic transit time and lower in density than normal compaction trend. Based on these corresponding features the pore pressure prediction was carried out for all the wells in the area. Sonic velocity-effective stress relationship and sonic velocity-density cross plots were employed to investigate the origin of overpressure in Ed Formation. Sedimentation rates and geothermal features were studied as well. Combining all the analysis, the overpressure of Ed Formation in northwest Liaodongwan Depression was dominantly generated by disequilibrium compaction. With this widely distributed overpressure, thick layers of mudstone of Ed Formation serve as a regional overpressured caprock. (C) 2016 Elsevier B.V. All rights reserved.
机译:渤海湾盆地是中国重要的石油盆地。渤海湾盆地近海辽东湾De陷的石油潜力已通过先前的勘探和生产得到证明,并遇到了超压现象。通过辽东湾De陷60口井的DST测量和泥浆重量数据总结,古新世东营(Ed)组异常高压分布在整个depression陷,并在3420 m深度处高达64.2 MPa。通过测井分析,可以发现不平衡压实的典型对应特征:比正常压实趋势高的声波传播时间和较低的密度。基于这些相应的特征,对该区域的所有井进行了孔隙压力预测。利用声速-有效应力关系和声速-密度交叉图研究了埃德组中超压的成因。还研究了沉积速率和地热特征。综合所有分析,辽东湾pression陷西北部埃德组超压主要由不平衡压实引起。由于这种广泛分布的超压,埃德形成层的厚厚泥岩层可作为区域超压盖层。 (C)2016 Elsevier B.V.保留所有权利。

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