...
首页> 外文期刊>Marine and Petroleum Geology >Cold seeps at the salt front in the Lower Congo Basin II: The impact of spatial and temporal evolution of salt-tectonics on hydrocarbon seepage
【24h】

Cold seeps at the salt front in the Lower Congo Basin II: The impact of spatial and temporal evolution of salt-tectonics on hydrocarbon seepage

机译:下刚果盆地盐前缘的冷渗流II:盐构造的时空演化对油气渗流的影响

获取原文
获取原文并翻译 | 示例
           

摘要

This study investigates the distribution and evolution of seafloor seepage in the vicinity of the salt front, i.e., the seaward boundary of salt-induced deformation in the Lower Congo Basin (LCB). Seafloor topography, bacicscatter data and TV-sled observations indicate active fluid seepage from the seafloor directly at the salt front, whereas suspected seepage sites appear to be inactive at a distance of >10 km landward of the deformation front. High resolution multichannel seismic data give detailed information on the structural development of the area and its influence on the activity of individual seeps during the geologic evolution of the salt front region. The unimpeded migration of gas from fan deposits along sedimentary strata towards the base of the gas hydrate stability zone within topographic ridges associated with relatively young salt-tectonic deformation facilitates seafloor seepage at the salt front. Bright and flat spots within sedimentary successions suggest geological trapping of gas on the flanks of mature salt structures in the eastern part of the study area. Onlap structures associated with fan deposits which were formed after the onset of salt-tectonic deformation represent potential traps for gas, which may hinder gas migration towards seafloor seeps. Faults related to the thrusting of salt bodies seawards also disrupt along-strata gas migration pathways. Additionally, the development of an effective gas hydrate seal after the cessation of active salt-induced uplift and the near-surface location of salt bodies may hamper or prohibit seafloor seepage in areas of advanced salt-tectonic deformation. This process of seaward shifting active seafloor seepage may propagate as seaward migrating deformation affects Congo Fan deposits on the abyssal plain. These observations of the influence of the geologic evolution of the salt front area on seafloor seepage allows for a characterization of the large variety of hydrocarbon seepage activity throughout this compressional tectonic setting. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项研究调查了盐下锋附近海底渗漏的分布和演化,即下刚果盆地盐诱发的形变的海边界。海底地形,bacbaccatter数据和电视滑轨观测表明,海底直接在盐锋处有活跃的流体渗漏,而可疑的渗漏点似乎在向变形锋面的距离> 10 km处不活跃。高分辨率多通道地震数据提供了有关该地区的结构发展及其对盐锋区地质演化过程中单个渗流活动的影响的详细信息。气体从扇状沉积物沿沉积层向天然气水合物稳定区底部的无阻碍迁移,与相对较年轻的盐构造变形相关的地形脊内,促进了盐前沿的海底渗漏。沉积演替过程中出现的明亮而平坦的斑点表明,在研究区域东部成熟的盐结构的侧翼上有地质地质气藏。在盐-构造变形开始后形成的与扇形沉积物相关的上覆结构代表了潜在的气藏,可能会阻碍天然气向海底渗漏的迁移。与盐体向海逆冲有关的断层也扰乱了沿地层的天然气运移路径。另外,在盐类活动性活动的停止和盐体近表面位置的停止之后,有效的水合物气密性的发展可能会阻碍或阻止晚期盐构造变形区域的海底渗漏。向海移动活动海底渗流的这一过程可能会随着向海迁移变形影响深海平原上的刚果扇沉积而传播。这些盐前缘的地质演化对海底渗漏的影响的观察结果可以表征整个压缩构造环境中各种油气渗漏活动。 (C)2014 Elsevier Ltd.保留所有权利。

著录项

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