首页> 外文期刊>Journal of structural geology >The internal geometry of salt structures - A first look using 3D seismic data from the Zechstein of the Netherlands
【24h】

The internal geometry of salt structures - A first look using 3D seismic data from the Zechstein of the Netherlands

机译:盐结构的内部几何形状-使用来自荷兰Zechstein的3D地震数据进行的初探

获取原文
获取原文并翻译 | 示例
       

摘要

We present a first look at the large-scale, complexly folded and faulted internal structure of Zechstein salt bodies in NW Europe using 3D reflection seismic reflection data from two surveys on the Groningen High and the Cleaver Bank High. We focus on a relatively brittle, folded and boudinaged, daystone-carbonate —anhydrite layer (the Z3 stringer) enclosed in ductile salt. A first classification of the structures is presented and compared with observations from salt mines and analogue and numerical models. Z3 stringers not only are reservoirs for hydrocarbons but can also present a serious drilling problem in some areas. Results of this study could provide the basis for better prediction of zones of drilling problems. More generally, the techniques presented here can be used to predict the internal structure of salt bodies, to estimate the geometry of economic deposits of all kinds and locate zones suitable for storage caverns. Structures observed include an extensive network of zones with increased thickness of the stringer. These we infer to have formed by early diagenesis, karstification, gravitational sliding and associated local sedimentation. Later, this template was deformed into large-scale folds and boudins during salt tectonics. Salt flow was rarely plane strain, producing complex fold and boudin geometries. Deformation was further complicated by the stronger zones of increased thickness, which led to strongly non-cylindrical structures. We present some indications that the thicker zones also influence the locations of later suprasalt structures, suggesting a feedback between the early internal evolution of this salt giant and later salt tectonics. This study opens the possibility to study the internal structure of the Zechstein and other salt giants in 3D using this technique, exposing a previously poorly known structure which is comparable in size and complexity to the internal parts of some orogens.
机译:我们使用来自Groningen High和Cleaver Bank High的两次调查的3D反射地震反射数据,对欧洲西北部Zechstein盐体的大型,复杂折叠和断层的内部结构进行了初步观察。我们专注于包裹在韧性盐中的相对较脆的,折叠的和包扎的日石碳酸盐-硬石膏层(Z3纵梁)。提出了结构的第一个分类,并与盐矿的观测结果以及模拟和数值模型进行了比较。 Z3纵梁不仅是碳氢化合物的储层,而且在某些地区还可能带来严重的钻井问题。这项研究的结果可以为更好地预测钻井问题区域提供基础。更一般而言,此处介绍的技术可用于预测盐体的内部结构,估算各种经济沉积的几何形状并确定适合于储藏洞穴的区域。观察到的结构包括带状纵梁厚度增加的广泛区域网络。我们推断这些是由于早期成岩作用,岩溶作用,重力滑动和相关的局部沉积形成的。后来,在盐构造过程中,该模板变形为大规模的褶皱和布丁。盐流很少受到平面应变,产生复杂的褶皱和布丁几何形状。厚度增加的更强区域使变形进一步复杂化,这导致了强烈的非圆柱结构。我们提出了一些迹象,表明较厚的区域也影响了后来的超盐构造的位置,这表明该盐巨人的早期内部演化与后来的盐构造之间存在反馈。这项研究为使用这种技术在3D中研究Zechstein和其他盐巨人的内部结构提供了可能性,从而揭露了以前鲜为人知的结构,其大小和复杂性可与某些造山带的内部部分相提并论。

著录项

  • 来源
    《Journal of structural geology》 |2011年第3期|p.292-311|共20页
  • 作者单位

    Structural Geology, Tectonics and Ceomechanics, Geological Institute, RWTH Aachen University, LochnerstraJSe 4-20, D- 52056, Aachen, Germany;

    Structural Geology, Tectonics and Ceomechanics, Geological Institute, RWTH Aachen University, LochnerstraJSe 4-20, D- 52056, Aachen, Germany;

    Nederlandse Aardolie Maatschappij b.v. (NAM.), Postbus 28000, 9400 HH, Assen, The Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    zechstein; salt tectonics; 3D reflection seismic; folding; boudinage;

    机译:采赫施泰因;盐构造;3D反射地震;褶皱;结扎;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号