首页> 外文期刊>Marine and Petroleum Geology >Seismic evidence for repeated vertical fluid flow through polygonally faulted strata in the Canterbury Basin, New Zealand
【24h】

Seismic evidence for repeated vertical fluid flow through polygonally faulted strata in the Canterbury Basin, New Zealand

机译:通过坎特伯雷盆地,新西兰坎特伯雷盆地的多醌故障地震流动的地震证据

获取原文
获取原文并翻译 | 示例
       

摘要

Seismic imaging techniques are widely used to determine fluid migration pathways in the subsurface. Understanding the timing and distribution of focused fluid migration pathways is important for assessing reservoir seal quality and hydrocarbon exploration risk, as well as seafloor biogeochemical processes in the case of fluid venting from the seafloor. The frontier Canterbury Basin southeast of New Zealand is well studied, but questions remain regarding the dynamic movement of fluids through the basin. Using 3D seismic data combined with high-resolution boomer seismic data, we characterise focused fluid migration and sediment remobilisation events in the Canterbury Basin. We show how polygonal fault formation and nucleation is affected in the vicinity of vertically ascending fluids and sediments. A cylindrical region devoid of polygonal faulting around the feeder system of a buried sediment volcano points to the possible existence of an axisymmetrical stress field induced by upward migrating fluids and sediments. Sediment remobilisation and intrusions of permeable stingers (i.e. sand injectites) could enable dewatering of their host strata and thereby prevent polygonal faults from nucleating. Amplitude variations with angle (AVA) and a detailed analysis of two tiers of polygonal faults reveal three phases of fluid migration and sediment remobilisation and intrusion through, and into, low permeability sediments. Our integrated conceptual model provides insights into vertical fluid migration mechanisms and the implications for polygonal fault formation.
机译:地震成像技术广泛用于确定地下中的流体迁移途径。了解聚焦液体迁移途径的时序和分配对于评估储层密封质量和碳氢化合物勘探风险,以及从海底流体通风的情况下的海底生物地球化学过程很重要。新西兰东南部的边疆坎特伯雷盆地研究得很好,但仍然存在通过盆地的流体动态运动。使用3D地震数据结合高分辨率的助力地震数据,我们在坎特伯雷盆地中的重点液体迁移和沉积物复合事件。我们展示了多边形故障形成和成核在垂直上升液和沉积物附近受到影响。围绕掩埋沉积物火山的馈电系统围绕多边形断层的圆柱区域,指向由向上迁移的流体和沉积物引起的轴对称应力场的可能存在。沉积物重新化和可渗透剂的侵入(即,砂注射器)可以使其宿主地层脱水,从而防止多边形断层核。角度(AVA)的幅度变化和两层多边形故障的详细分析显示了通过,通过,进入低渗透性沉积物,揭示了三个液体迁移和沉积物复合和侵入。我们的集成概念模型提供了垂直流体迁移机制的见解和多边形故障形成的影响。

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