期刊文献+

泥岩层数对泥岩涂抹形成及演化影响的物理模拟 被引量:3

Physical simulation of clay layer effect on clay smear and evolution
下载PDF
导出
摘要 在油气勘探开发过程中断层封闭性起到了重要的作用,特别是在断块油气田中,断层封闭性直接影响油气的运聚成藏。断层封闭性主要分为对接封闭和断层岩封闭2种类型,泥岩涂抹作为断层岩封闭中的一种,对断层封闭性起到了重要的作用。泥岩涂抹是砂-泥岩互层地层变形研究中的一个重点,受到许多因素的影响,如泥岩层的流变性、能干性、埋藏深度、变形速率等。目前,对泥岩涂抹的研究主要通过野外露头区考察和模拟实验,然而对于泥岩涂抹的形成以及演化过程的研究只能借助于模拟实验。文中设计完成了4个砂箱实验,并应用粒子成像测速(PIV)技术计算实验模型剖面上断层发育过程中各个阶段剪切应变的分布变化,进而对泥岩涂抹的形成和演化机制进行探讨。 Fault sealing plays an important role during the process of petroleum exploration and development, especially in fault- block oil and gas fields. Fault sealing affects migration and accumulation of petroleum directly. Fault sealing is divided into two categories: fault rock seal and juxtaposition seal. Being a kind of fault rock seal, clay smear plays an important role in fault sealing. Shale smear is the focus in research of sand-clay sequence deformation, which is affected by many factors such as rheological property of mudstone layers, competence, burial depth, deformation rate. The main means applied in research include outcrop observing and experimental approach, however, the study on formation and evolution of shale smear is only carried out by means of physical simulation experiment. This paper completed four sand box experiments, using particle image velocimetry (PIV) technology, calculated the distribution changes of shear strain during the process of fault development on the profile of experimental model and discussed the formation and evolution mechanism of shale smear.
出处 《断块油气田》 CAS 北大核心 2015年第6期722-728,共7页 Fault-Block Oil & Gas Field
基金 国家自然科学基金项目"泥岩涂抹形成的地质条件及有效封闭机理"(41272152)
关键词 PIV 泥岩涂抹 形成及演化 物理模拟 剪切应变 PIV clay smear, formation and evolution physical simulation shear strain
  • 相关文献

参考文献33

  • 1Rettger R E. Experiments on soft-rock deformation [ J ]. AAPG Bulletin, 1935,19(2) :271-292.
  • 2Perkins H. Fault closure-type fields, southeast Louisiana [J ]. Gulf Coast Association of Geological Societies Transactions, 1961 ( 11 ) : 177-196.
  • 3Smith D A. Sealing and nonsealing faults in Louisiana Gulf Coast salt basin [J ]. AAPG Bulletin, 1980,64 (2) : 145-172.
  • 4Reid H F, Davis W M, Lawson A C, et al. Report of the committee on the nomenclature of faults [J]. Geologische Rundsehau, 1914,5 (4) : 299-301.
  • 5Sibson R H. Fault rocks and fault mechanisms [ J ]. Journal of the Geological Society, 1977,133 ( 3 ) : 191-213.
  • 6Sperrevik S,Faerseth R B ,Gabrielsen R H. Experiments on clay smear formation along faults [ J ]. Petroleum Geoscience, 2000,6 (2) : 113 - 123.
  • 7Peacock D, Knipe R J, Sanderson D J. Glossary of normal faults [ J ]. Journal of Structural Geology, 2000,22 ( 3 ) : 291 - 305.
  • 8Knipe R J. Faulting processes and fault seal [ C ]//Larsen R M, Brekke H,Larseu B T,et al. Structural and tectonic modelling and its application to petroleum geology. Stavanger: NPF Special Publication, 1992 : 325 -342.
  • 9Allan U S. Model for hydrocarbon migration and entrapment within faulted structures [J ]. AAPG Bulletin, 1989,73 (7) :803-811.
  • 10Knott S D. Fault seal analysis in the North Sea [J ]. AAPG Bulletin, 1993,77 (5) :778-792.

二级参考文献150

共引文献55

同被引文献65

引证文献3

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部