[1]雷胜兰,邹雅铭,李志晔,等.基于正演模拟的潜山裂缝储层地震响应特征研究[J].华南地震,2026,46(04):194-204.[doi:10.13512/j.hndz.2026.04.21]
 LEI Shenglan,ZOU Yaming,LI Zhiye,et al.Seismic Response Characteristics of Buried Hill Fractured Reservoir Based on the Forward Modelling[J].,2026,46(04):194-204.[doi:10.13512/j.hndz.2026.04.21]
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基于正演模拟的潜山裂缝储层地震响应特征研究()

华南地震[ISSN:1006-6977/CN:61-1281/TN]

卷:
46
期数:
2026年04期
页码:
194-204
栏目:
海洋地球物理
出版日期:
2026-07-09

文章信息/Info

Title:
Seismic Response Characteristics of Buried Hill Fractured Reservoir Based on the Forward Modelling
文章编号:
1001-8662(2026)04-0194-11
作者:
雷胜兰12邹雅铭12李志晔12范殿佐12姚文瀚12刘 浩12
1.中海石油深海开发有限公司,深圳 518054;2.中海石油(中国)有限公司深圳分公司,深圳 518054
Author(s):
LEI Shenglan12ZOU Yaming12LI Zhiye12FAN Dianzuo12YAO Wenhan12LIU Hao12
1.CNOOC Deepwater Development Limited, Shenzhen 518054, China;2.Shenzhen Branch, CNOOC China Limited, Shenzhen 518054, China
关键词:
潜山裂缝型储层各向异性正演模拟反射率法
Keywords:
Buried hill Fractured reservoir Seismic anisotropy Forward modelling Reflectivity method
分类号:
P3
DOI:
10.13512/j.hndz.2026.04.21
文献标志码:
A
摘要:
近年来,随着深水油气勘探的发展,深层勘探已成为海上油气勘探的一个非常重要的方向。位于南海北部的白云凹陷主洼东部深水探区潜山构造发育,潜山内幕的地震响应杂乱、弱反射等特征突出。为了厘清潜山裂缝性储层的地震响应特征,根据潜山叠后实际地震剖面和地质解释,建立地震正演模型,开展了正演模拟,并阐述了潜山内幕的地震响应机理。通过正演模拟及响应特征分析,潜山内幕地震响应特征的成因:潜山顶与上覆岩层的岩性差异大导致强震幅,潜山上覆地层呈现较好的水平层状结构;由于潜山顶风化严重以及构造运动,山顶破坏严重,产生大量的交错的大尺度断裂,导致内幕响应错乱,潜山内幕呈现三元结构,由上到下分为破碎裂缝带、内幕裂缝带和新鲜基岩带,响应特征以杂乱反射、弱反射两大特征为主;受淡水淋漓、后期改造影响,以及基底层段内的暗色矿物较为发育,易于风化蚀变,在潜山顶及其内幕发育较多的中小尺度裂缝、孔隙,形成地震剖面的杂乱反射特征。同时,为了进一步对潜山储层的中小尺度裂缝响应研究,结合邻区测井数据进行岩石物理建模,建立潜山储层模型,通过反射率法对不同裂缝密度的模型进行全方位正演,建立裂缝密度与地震响应的关系。结合AVAZ、VVAZ分析认为,潜山裂缝性储层的裂缝密度对储层各向异性特征的影响具有较高的正相关性,随着裂缝密度的降低,储层各向异性特征减弱。
Abstract:
In recent years, with the development of deep-water oil and gas exploration, deep exploration has become a very important direction for offshore oil and gas exploration. The deep-water exploration area in the eastern main sag of Baiyun Sag in the northern South China Sea is characterized by well-developed buried hill structures, with chaotic seismic responses, and weak reflections inside the buried hill. To clarify the seismic response characteristics of fractured reservoirs in buried hills, a seismic forward model was established based on the post-stack actual seis?mic profile and geological interpretation of buried hills, the forward simulation was carried out, and the seismic re?sponse mechanism of buried hill interior was elaborated. Through forward modeling and response characteristics analysis, the causes of the seismic response characteristics inside the buried hill are as follows: the significant differ?ence in lithology between the buried hill top and the overlying rock layer leads to strong seismic amplitudes, and the overlying strata of the buried hill exhibit a well-developed horizontal layered structure; due to severe weathering at the top of the buried hill and the tectonic movement, the top of the buried hill is seriously damaged, resulting in a large number of staggered large-scale fractures and chaotic internal seismic responses. The buried hill interior exhib?its a ternary structure, which is divided into a fracture zone, a subsurface fractured zone and a fresh bedrock zone from top to bottom, with response characterized primarily by chaotic reflections and weak reflections. Influenced by freshwater leaching and later transformation, as well as the relatively developed dark minerals in the basement layer, they are prone to weathering and alteration. There are many medium-and small-scale fractures and pores developed on the top and inside of the buried hill, forming the chaotic reflection characteristics of seismic profile. Meanwhile, in order to further study the response of the medium-and small-scale fractures in buried hill reservoirs, rock physics mod?eling was performed in combination with logging data from adjacent areas to construct a buried hill reservoir model. Models with different fracture densities were comprehensively forward simulated using the reflectivity method, and the relationship between fracture density and seismic response was established. Combined with AVAZ and VVAZ analysis, it is considered that the fracture density of buried hill fractured reservoirs has a high positive correlation with the reservoir anisotropic characteristics. With the decrease of fracture density, the anisotropy of reservoir weaken.

参考文献/References:

[1]姚伯初,曾维军,陈艺中,等.南海北部陆缘东部的地壳结构[J].地球物理学报,1994,37(1):27-35.
[2]陈洁,温宁,李学杰.南海油气资源潜力及勘探现状[J].地球物理学进展,2007,22(4):1285-1294.
[3]张功成,谢晓军,王万银,等.中国南海含油气盆地构造类型及勘探潜力[J].石油学报,2013,34(4):611-627.
[4]谢玉洪.南海北部自营深水天然气勘探重大突破及其启示[J].天然气工业,2014,34(10):1-8.
[5]薛永安,李慧勇.渤海海域深层太古界变质岩潜山大型凝析气田的发现及其地质意义[J].中国海上油气,2018,30 (3):1-9.
[6]贾承造.关于中国当前油气勘探的几个重要问题[J].石油学报,2012,33(S1):6-13.
[7]谢玉洪.中国海油近海油气勘探实践与思考[J].中国海上油气,2020,32(02):1-13.
[8]谢玉洪.中国海油“十三五”油气勘探重大成果与“十四五”前景展望[J].中国石油勘探,2021,26(01):43-54.
[9] Sidney P, Frederick G C. Nature and origin of occurrences of oil, gas, and bitumen in igneous and metamorphic rocks[J]. GeoScienceWorld, 1932, 16(8): 719-726.
[10] Petford N, McCaffrey K. Hydrocarbons in crystalline rocks:an introduction[J]. Geological Society, London, Special Pub?lications, 2003, 214(1): 1-5.
[11]窦立荣,魏小东,王景春,等.乍得Bongor盆地花岗质基岩潜山储层特征[J].石油学报,2015,36(8):897-904, 925.
[12] Xue Y A, Zhao M, Liu X J. Reservoir characteristics and controlling factors of the metamorphic buried hill of Bozhong Sag, Bohai Bay Basin[J]. Journal of Earth Science, 2021, 32(4): 919-926.
[13]陈琪.基于宽方位资料的潜山储层地震响应特征分析及应用[D].成都:成都理工大学,2021.
[14]田立新,刘杰,张向涛,等.珠江口盆地惠州26-6大中型泛潜山油气田勘探发现及成藏模式[J].中国海上油气, 2020,32(04):1-11.
[15]曹孟贤.珠江口盆地惠州凹陷古潜山火成岩储层可钻性研究[J].海洋石油,2022,42(02):89-96.
[16]邹雅铭,刘道理,徐乐意,等.基于优化后窄方位地震数据的潜山储层预测分析研究[J]. 华南地震,2026,46 (01):139-145.
[17]杨美纯,蔡泉,张驰,等.基于正交各向异性的碳酸盐岩裂缝型储层稳定反演预测方法——以塔里木盆地哈拉哈塘地区为例[J].华南地震,2025,45(02):192-200.
[18]薛志刚,张振波,刘铮,等.OBN宽方位地震在潜山勘探中的应用[J].华南地震,2024,44(02):102-109.
[19]姜传金,戴世立,张广颖,等.松辽盆地北部中央古隆起带基底储层AVO特征模拟及时频特征分析研究[J].石油科学通报,2022(04):505-514.
[20]寻浩,董敏煜,牟永光.各向异性介质中反射率法波场模拟及体波辐射图案[J].石油地球物理勘探,1997,32(5):605-614.
[21]米立军,张忠涛,庞雄,等.南海北部陆缘白云凹陷油气富集规律及主控因素[J].石油勘探与开发,2018,45(05):902-913.
[22]施和生,柳保军,颜承志,等.珠江口盆地白云—荔湾深水区油气成藏条件与勘探潜力[J].中国海上油气,2010, 22(06):369-374.
[23]鲁宝亮,王璞珺,张功成,等.南海北部陆缘盆地基底结构及其油气勘探意义[J].石油学报,2011,32(4):580-587.

相似文献/References:

[1]薛志刚,张振波,刘 铮,等.OBN宽方位地震在潜山勘探中的应用[J].华南地震,2024,(02):102.[doi:10.13512/j.hndz.2024.02.12]
 XUE Zhigang,ZHANG Zhenbo,LIU Zheng,et al.Application of OBN with Wide Azimuth Seismic Survey in Buried Hill Exploration[J].,2024,(04):102.[doi:10.13512/j.hndz.2024.02.12]

备注/Memo

备注/Memo:
收稿日期:2026-01-17
基金项目:中国海洋石油有限公司前瞻基础研究项目(KJQZ-2024-2004)
作者简介:雷胜兰(1988-),女,工程师,研究方向为地震综合解释。E-mail: leishl@cnooc.com.cn
更新日期/Last Update: 2026-07-20