三维地震属性在科威特Greater Burgan油田碎屑储层定向井规划与钻井中的成功影响

Hussain Bahman, F. Ali, Saud M. Al-Haddad, Dalal A Muzaffar
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引用次数: 0

摘要

河道砂储层很少具有层饼几何形状,通常以水平和垂直连续性有限的砂体/透镜体为特征。储层厚度和储层性质发生显著的横向变化,透镜体往往在不同的地层水平上叠加。大布尔干油田的储层砂在构造和地层上都表现出类似的变化。在这种复杂通道砂岩储层中进行井眼导航需要精确的地质导向技术,主要有两个要求:利用倾角信息探测储层边界,进行结构导向。绘制目标层上下多层图,进行地层定位。利用层倾角和各向异性信息来探测储层边界,可以极大地帮助根据地层变化提出规划轨迹,这需要对地震数据和邻井信息有很好的了解和研究。三维地震数据极大地帮助了各种井的布置,特别是对斜井和水平井的精细轨迹设计和微调。利用地震立方体数据获得的属性,即结构和相干体,可以成像大到小的断层,这些断层通常在主要地层顶部的切片上看到。阻抗、Vp/Vs、孔隙度、含砂概率图等属性可以反映储层含砂部分的可能性。在速度模型或深度偏移地震体的地震分辨率限制下,可以很准确地预测各主要地层顶的深度。这些深度预测极大地帮助设计井眼轨迹,并使井以期望的角度进入油藏的实际期望区域。在地质导向过程中,尽管钻井承包商可以使用各种工具,但如果钻井队偏离了油藏的良好部分,地震数据可以帮助指导钻井人员朝着正确的方向进行导向。在地震剖面上叠加这样的井,可以直接给出整个井眼轨迹的预测深度,这有助于设计井斜测量参数。本文将解释一种被称为Ant-trak的特殊属性,它不仅可以显示主要断层,还可以显示非常小的断层,有时还可以显示在地震剖面或切片中看不到的精细地质特征。该属性在Burgan-Third砂顶面上取。NW-SE主要断层均可见。除此之外,还可以看到一些小的断层。PSTM地震资料与其它构造属性结合在一起,能够很清楚地显示断层。这样的混合表面增强了研究区域断层的显示,包括非常小的断层,这有助于设计调查。通过不同的地震体积和地表属性分析,对研究区内的主要断层走向进行了标记,提取了许多构造特征。我们尝试处理不同的属性参数,并在该地区每口规划水平井附近使用邻井数据测井,这有助于我们在地质导向水平井中更好地控制。
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Successful Impact of 3D Seismic Attributes in Planning and Drilling Directional Wells in Clastic Reservoir of Greater Burgan Field in Kuwait
Channel sand reservoirs very rarely have layer cake geometries and are generally characterized by sand bodies/lenses with limited horizontal and vertical continuity. Significant lateral changes occur in reservoir thickness as well as reservoir properties and lenses are often stacked at different stratigraphic levels. The reservoir sands in the greater Burgan field show similar variations both structurally and stratigraphically. Navigating a wellbore in such complex channel sand reservoir requires precision geo-steering technology with two major requirements: Detecting reservoir boundaries with dip information for structural steering. Mapping multiple layers above and below the target layer for stratigraphic positioning. Detecting reservoir boundaries with information on layer dip and anisotropy can immensely help to forward plan trajectory as per formation changes and this require a good knowledge and study about the seismic data and offset wells information. 3D seismic data immensely help in placement of all kinds of wells, especially designing and fine-tuning a meticulous trajectory for Deviated and horizontal wells. Attributes made with seismic cube data, namely Structure and coherency volume, can image major to minor faults, which are generally viewed on slices of major formation tops. There are various other attributes like Impedance, Vp/Vs, Porosity and sand probability map, which can indicate possibility of sweeter part of reservoir. Depth of various major formation tops are predicted quite accurately within the limit of seismic resolution from Velocity model or Depth-Migrated seismic volume. These depth predictions immensely help in designing trajectory and landing the well in the actual desired zone of reservoir at the desired angle. During Geo-steering also, in spite of all the tools of drilling contractor at their disposal, the seismic data help to guide the drillers to steer in the right direction, if drilling team is out of track from the good part of reservoir. Overlaying such a well in the seismic section directly gives the predicted depth throughout the well trajectory, which helps to design the Deviation survey parameters. The paper will explain a special attribute called Ant-trak, which not only shows the major faults, but also very minor faults and sometimes, fine geological features, which cannot be seen in seismic section or slices. This attribute is taken on Burgan-Third sand top surface. All the major NW-SE faults can be seen. Over and above, some minor faults are also seen in it. PSTM seismic data and the other structural attribute which able to show together, faults very clearly. Such a blended surface gives an enhanced display of faults in the area of study including very minor ones, which help to design the survey. By using different Seismic Volume and Surface Attribute analysis, we mark the major faults trend and extracted many structural features in the study area. We try to deal with different attribute parameters and use offset wells data logs near to each planed horizontal well in the area which help us to have more control during geo-steering horizontal wells.
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