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Horizontal Well Placement for Heavy Oil Production in Colombia

机译:巨大的油厂在哥伦比亚生产的水平井放置

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The success of a horizontal drilling campaign highly depends on the implementation of appropriate well placement procedures to manage the constraints, risks, and uncertainties that may have a negative impact on the overall economy of the project. The magnitude of the uncertainties associated with the horizontal well trajectory and the geology is usually higher than the magnitude of that particular target within the reservoir that would maximize the production. The risk and uncertainty factors can be handled with the use of particular well placement techniques during the planning and execution phases. In the planning phase, these techniques include proper geological modeling methods and flexible well planning to allow room for changes if unexpected events arise while drilling. During the well execution, procedures should include the use of appropriate technologies to understand in real time the rock properties, the reservoir geometry, and horizontal well position, and, based on this information, to steer the well within the desired geological target. Girasol field, located in the Middle Magdalena Valley basin in Colombia, is composed of a sequence of sandstone channels that contain heavy oil with gravity ranging from 11 to 13° API. The main targets are five stacked sandstone reservoirs, from 10 to 35 ft thick, located 1,100 to 1,500 ft true vertical depth below surface. The field development included cyclic steam injection applied in horizontal wells to improve the heavy oil mobility. To maximize oil production and improve the cumulative steam/oil ratio, the objective was to place horizontal wells of up to 2,500 ft lateral extension within 3 to10 ft distance from the bottom shale of each reservoir. The horizontal well placement under this type of scenario required the use of precise horizontal well placement techniques and drilling practices to avoid exits from the predefined geological targets. These techniques relied on the use of deep directional electromagnetic measurements that enabled real-time bed boundary mapping. This paper presents the main challenges and uncertainties faced for well placement in the Girasol field horizontal drilling campaign, the technical solutions implemented, and the lessons learned in more than 80 horizontal wells drilled.
机译:横向钻探运动的成功高度取决于实施适当的井放置程序,以管理可能对项目整体经济产生负面影响的限制性,风险和不确定性。与水平井轨迹相关的不确定性的大小通常高于储层内的特定目标的大小,这将最大化生产。风险和不确定性因素可以在规划和执行阶段使用特定的井放置技术处理。在规划阶段,这些技术包括适当的地质模型方法和灵活的井规划,以​​便如果在钻井时出现意外事件,则允许更改的空间。在执行过程中,程序应包括使用适当的技术在实时理解岩石属性,储层几何和水平井位置,以及基于这些信息,以引导井内所需的地质目标。位于哥伦比亚Magdalena Valley盆地中间的Girasol领域由一系列砂岩通道组成,该砂岩通道含有重力,重力从11到13°API。主要目标是五个堆叠的砂岩储层,从10到35英尺厚,位于1,100至1,500英尺真正的垂直深度。现场开发包括液体井中施用的循环蒸汽喷射,以改善重油迁移率。为了最大限度地提高石油生产,提高累积蒸汽/油比,目的是从每个储库的底部的距离距离3至10英尺处的水平井。在这种情况下的水平井放置需要使用精确的水平井放置技术和钻井实践来避免从预定的地质目标中退出。这些技术依赖于使用深定向电磁测量,使能实时床边界映射。本文提出了在吉拉索田间水平钻探活动中井井井的主要挑战和不确定性,实施技术解决方案,以及80多家水平井中的经验教训。

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