Geologic Exploration

Accurate Description by Well-To-Seismic Integration of Glutenite Fan Sedimentation in the Northern Dongying Sag, Jiyang Sub-basin

  • Liu Jianwei
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  • Sinopec Shengli Oilfield Company, Dongying, Shandong 257052, China

Received date: 2020-01-08

  Revised date: 2020-11-09

  Online published: 2021-04-27

Abstract

Glutenite fan reservoir is one of the important reservoir types for enhancing reserve and productivity in Shengli Oilfield. In view of the problems of strong heterogeneity and low accuracy of reservoir description, on the basis of core observation, logging response analysis and seismic forward modeling, the glutenite fan in Well Y22 in the northern slope of the Dongying Sag was finely divided with well-to-seismic integration into subfacies and microfacies by such methods as fine stage division, synthetic record calibration, and numerical simulation. It is found in the study that the different sedimentary structure of sedimentary subfacies of glutenite fan brought about different reflection characteristics, and the sedimentary subfacies could be easily distinguished by waveform clustering attribute; the middle-fan subfacies of the glutenite fan in the Yanjia Area was mainly developed with two sedimentary microfacies, namely braided channel and water channel, the lithology of the braided channel was mainly composed of thick pebbled sandstone deposit, and the edge of the water channel was composed of interactive deposit of mudstone and pebbled sandstone; the regional lithology could be easily distinguished with AC, RLLD and CNL logging curves, and accurate description by well-to-seismic integration of sedimentary subfacies and microfacies of the glutenite fan based on logging curves and variogram simulation, under the constraints of sedimentary facies and tectonic stage models. This technology can accurately describe the sedimentary facies zone of the glutenite fan, and provide technical support for the deployment of glutenite fan exploration and later productivity construction.

Cite this article

Liu Jianwei . Accurate Description by Well-To-Seismic Integration of Glutenite Fan Sedimentation in the Northern Dongying Sag, Jiyang Sub-basin[J]. Special Oil & Gas Reservoirs, 2021 , 28(1) : 18 -25 . DOI: 10.3969/j.issn.1006-6535.2021.01.003

References

[1] 张善文,隋风贵,王永诗.济阳坳陷下第三系陡岸沉积模式[J].沉积学报,2001,19(2): 219-223.
ZHANG Shanwen,SUI Fenggui,WANG Yongshi.Depositional models on the steep slope of paleogene,Jiyang Sub-Basin[J].Acta Sedimentologic Sinica,2001,19(2):219-223.
[2] 孔凡仙.东营凹陷北带砂砾岩扇体勘探技术与实践[J].石油学报,2000,21(5):21-31.
KONG Fanxian.Exploration technique and practice of glutenite fan in north zone of Dongying Depression[J].Acta Petrolei Sinica,2000,21(5):21-31.
[3] 操应长,金杰华,王艳忠,等.东营凹陷北带古近系沙四段砂砾岩扇体沉积特征及沉积模式[J].沉积与特提斯地质,2014,32(4):13-14.
CAO Yingchang,JIN Jiehua,WANG Yangzhong,et al.Sedimentary characteristics and model for the sandstones and conglomerates in the 4th Member of the Palaeogene Shahejie Formation,northern Dongying Depression,Shandong[J].Sedimentary Geology and Tethyan Geology,2014,32(4):13-14.
[4] 刘鑫金,宋国奇,刘惠民,等.东营凹陷北部陡坡带砂砾岩油藏类型及序列模式[J].油气地质与采收率,2012,19(5):20-23.
LIU Xinjin,SONG Guoqi,LIU Huimin,et al.Types and sequence patterns of glutenite reservoirs in the northern steep slope zone of the Dongying Depression [J].Petroleum Geology and Recovery Efficiency,2012,19(5):20-23.
[5] 韩宏伟,崔红庄,林松辉,等.东营凹陷北部陡坡带砂砾岩扇体地震地质特征[J].特种油气藏,2003,10(4):28-30.
HAN Hongwei,CUI Hongzhuang,LIN Songhui,et al.Seismic geological characteristics of glutenite fan bodies in the northern steep slope zone of the Dongying Depression[J].Special Oil & Gas Reservoirs,2003,10(4):28-30.
[6] 林松辉,王华,王兴谋,等.断陷盆地陡坡带砂砾岩扇体地震反射特征[J].地质科技情报,2005,24(4):56-59.
LIN Songhui,WANG Hua,WANG Xingmou,et al.Seismic reflection characteristics of glutenite fan bodies in steep slope zone of faulted basin: a case study of Dongying Sag[J].Geological Science and Technology Information,2005,24(4):56-59.
[7] 马丽娟,何新贞,孙明江,等.东营凹陷北部砂砾岩储层描述方法[J].石油物探,2002, 41(3):354-358.
MA Lijuan,HE Xinzhen,SUN Mingjiang,et al.Characterization of glutenite reservoirs in the northern Dongying Sag[J].Geophysical Prospecting for Petroleum,2002,41(3):354-358.
[8] 王树刚,李红梅,魏文,等.东营凹陷北带深层砂砾岩扇体的地震预测方法[J].石油物探,2009,48(6):585-590.
WANG Shugang,LI Hongmei,WEI Wen,et al.Seismic prediction method of deep glutenite body in north zone of Dongying Depression[J].Geophysical Prospecting for Petroleum,2009,48(6):585-590.
[9] 鲁国明.东营凹陷深层砂砾岩岩性测井综合识别技术[J].测井技术,2010,34(2):168-171.
LU Guoming.Logging comprehensive identification technology of deep sandy conglomerate lithology, Dongying Sag[J].Well Logging Technology,2010,34(2):168-171.
[10] 张洪江.常规成像测井等资料砂砾岩岩性识别研究[D].大庆:东北石油大学,2011.
ZHANG Hongjiang.Study on lithologic identification of glutenite by conventional and imaging logging data[D].Daqing:Northeast Petroleum University,2011.
[11] 付艳.东营凹陷盐22块砂砾岩储层预测研究[D].青岛:中国石油大学(华东),2010.
FU Yan.Glutenite reservoir prediction research in Yan22 Block of Dongying Depression[D].Qingdao:China University of Petroleum(East China),2010.
[12] 印森林,吴胜和,冯文杰,等.冲积扇储集层内部隔夹层样式——以克拉玛依油田一中区克下组为例[J].石油勘探与开发,2013,40(6):757-763.
YIN Senlin,WU Shenghe,FENG Wenjie,et al.Patterns of inter-layers in the alluvial fan reservoirs:a case study on Triassic Lower Karamay Formation,Yizhong Area,Karamay Oilfield, NW China[J].Petroleum Exploration and Development,2013,40(6):757-763.
[13] 梁顺军,梁霄,陈江力,等. 山地复杂构造倒转背斜地震剖面反射特征及油气成藏分析[J]. 中国石油勘探, 2019, 24(3): 377-390.
LIANG Shunjun, LIANG Xiao, CHEN Jiangli, et al.Seismic reflection features and analysis of hydrocarbon accumulation of reversed anticlines in complicated mountainous areas[J]. China Petroleum Exploration, 2019, 24(3): 377-390.
[14] 张建民, 钱赓, 朱建敏, 等. 渤海南部A 油田古近系物源约束地震储层预测[J]. 西南石油大学学报(自然科学版), 2018, 40(2): 15-24.
ZHANG Jianmin, QIAN Geng, ZHU Jianmin, et al.Paleogene source-constrained seismic reservoir predictions in a oilfield of the southern Bohai Sea [J]. Journal of Southwest Petroleum University(Science & Technology Edition), 2018, 40(2): 15-24.
[15] 刘振宽,宋宗平,宋瑞. 高精度三维地震技术及其在松辽盆地北部扶余油层砂体刻画中的应用[J].大庆石油地质与开发,2019,38(3):117-121.
LIU Zhenkuan, SONG Zongping, SONG Rui. High-precision 3D seismic techniques and their application in the sandbody characterization of Fuyu oil reservoirs in North Songliao Basin[J]. Petroleum Geology & Oilfield Development in Daqing,2019,38 (3):117-121.
[16] 覃发兵, 徐振旺, 啜晓宇, 等. 基于经验小波变换的地震资料噪声压制方法[J]. 中国石油勘探, 2018, 23(5): 100-110.
QIN Fabin, XU Zhenwang, CHUAL Xiaoyu, et al. Seismic noise suppression based on empirical wavelet transformation[J].China Petroleum Exploration, 2018, 23(5): 100-110.
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