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First Experience in the Application of Radial Perforation Technology in Deep Wells

机译:径向穿孔技术在深井中应用的第一经验

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This paper describes the first application of radial perforation technology with hydraulic jet and coiled tubing in deep wells with complex geometry. Radial perforation technique utilizing hydraulic energy is being used in different places around the world with good results. Its main application is intended for marginal fields, with low productivity and shallow wells with depths between 1000m and 2000m, normally having simple geometry. Basically, several perforations can be made with this technology, in an existing well (mother well), perpendicular to the well axis and at several productive levels, thus improving the production profile around the main well or mother well. Repsol YPF Bolivia has adopted this technology to perform a pilot test in fields with good to moderate recovery and in deep wells with complex geometry (directional wells with depths between 3500m and 3900m). This operation was performed in three wells (Surubi A1, Paloma C7 and Surubi Bloque Bajo 109) in the Mamore Block in Bolivia. The main challenge for this operation was to adapt equipment and tools used up to that time, to much more severe operational conditions due to greater depths, tortuosity, type of formations to be drilled and mechanical conditions of the wells. The main subjects covered by this paper are: 1. Introduction 2. Characteristics of the reservoir and objectives for the application of this technology. 3. Geometrical and mechanical characteristics of the wells. Operative results. 4. Description of the equipment and main adaptations to new operative conditions. 5. Main problems encountered. Solutions. Operative limitations. 6. Conclusions. The results indicate that this technology may continue being an attractive substitute for other stimulation techniques, such as fractures, acids, side tracking, etc, even with higher costs implied by its application to complex wells and with the improvements that will definitively be applied to current tools and equipment
机译:本文介绍了径向穿孔技术与液压射流和螺旋管在深井中具有复杂几何形状的径向流管。利用液压能量的径向穿孔技术在世界各地的不同地方使用了良好的效果。其主要应用适用于边缘领域,生产力低,浅井,深度在1000米和2000米之间,通常具有简单的几何形状。基本上,可以在现有的井(母体井)中,垂直于井轴和若干生产水平的若干穿孔,从而改善了主要孔或母母井周围的生产曲线。 Repsol YPF玻利维亚采用了这项技术,在良好的田地中进行了试验试验,良好地恢复,深井具有复杂的几何形状(方向井,深度在3500米和3900米之间)。在玻利维亚的Mamore块中,在三个井(Surubi A1,Paloma C7和Surubi Bloque Bajo 109)中进行了该操作。这项操作的主要挑战是通过更大的深度,曲折,井的井的结构,适应多次使用的设备和工具,更严重的运行条件。本文所涵盖的主要科目是:1。介绍2.储层特征及其应用本技术的目标。 3.井的几何和机械特性。操作结果。 4.设备的描述和对新手术条件的主要适应性。 5.遇到的主要问题。解决方案。操作限制。 6。结论。结果表明,这种技术可能继续是对其他刺激技术的吸引力替代品,例如裂缝,酸,侧跟踪等,即使其应用于复杂孔的更高的成本以及将肯定地应用于电流的改进工具和设备

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