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Understanding Fractures Through Seismic Data: North Kuwait Case Study

机译:通过地震数据理解骨折:北科威特案例研究

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Understanding fracture corridors is the primary driver for successful development of fractured carbonate reservoirs. This assumes further significance if the carbonate reservoir is characterized by very low porosity and permeability; producibility of the reservoir is purely dependent on the presence of natural fractures. Distribution and type of natural fractures is a function of palaeo & present day stress, structural elements, regional tectonics and diagenetic history. Direct detection of fractures is below the resolution of conventional seismic data. However, through a combination of seismic derived attributes integrated with well data, it is possible to better understand the distribution of fracture swarms.Kuwait Oil Company (KOC) is currently engaged in an early phase of development of a tight fractured carbonate North Kuwait Jurassic gas play. Considering the limited well control, field development is heavily reliant on seismic data for fracture characterization. This paper presents our current understanding of the relationship between fractures observed in the well data and structures, faults and lineaments interpreted on seismic data. In addition to conventional seismic analysis a suite of seismic attributes including Dip, Coherence, Edge and 3D Volume curvature were used for mapping structures, faults and minor lineaments. Well-wise and field-wise analysis of relationships between seismic derived attribute-pattern and fracture orientation was established. The understanding between these two different sets of data has helped in locating potential zones of sweet spots for placing successful delineation and development wells. These seismic attribute volumes were also used as soft constraint for building the Discrete Fracture Network (DFN) model for populating the fracture network in the reservoir model. The data presented in this paper are from the Raudhatain, Sabriyah and North West Raudhatain (NWRA) fields for the Najmah-Sarjelu part of the Jurassic section.
机译:了解骨折走廊是成功开发骨折碳酸盐储层的主要驱动因素。这假设碳酸盐储层的特征在于孔隙率非常低,渗透性;储层的可生产纯粹依赖于天然骨折的存在。自然骨折的分布和类型是古草和本日胁迫,结构元素,区域构造和成岩史的功能。直接检测骨折低于常规地震数据的分辨率。然而,通过与井数据集成的地震衍生属性的组合,可以更好地了解骨折群的分布.Kuwait石油公司(Koc)目前正在从事一阶段开发的碳酸盐河北部科威特侏罗纪天然气玩。考虑到有限的良好控制,现场开发严重依赖于裂缝表征的地震数据。本文介绍了目前对在井数据和结构中观察到的骨折之间关系的理解,解释了地震数据的故障和谱系。除了传统地震分析之外,还用于绘制结构,故障和小界面,包括垂度,连贯,边缘和3D体积曲率,包括浸渍,连贯,边缘和3D体积曲率的地震属性套件。建立了地震衍生属性模式与断裂取向之间的关系的良好和现场明智的分析。这两种不同数据之间的了解有助于定位甜点的潜在区域,以便放置成功的描绘和发展井。这些地震属性体积也被用作构建用于在储层模型中填充裂缝网络的离散断裂网络(DFN)模型的软限制。本文提出的数据来自Raudhatain,Sabriyah和North West Raudhatain(NWRA)侏罗纪部分的Najmah-Sarjelu部分。

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