首页> 外文会议>Society of Petroleum Engineers Annual Technical Conference >Innovative Concentric 4 1 Design for Multi-Path Gravel Pack System Extends Effective Packable Length and Eliminates Additional Make-up Time
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Innovative Concentric 4 1 Design for Multi-Path Gravel Pack System Extends Effective Packable Length and Eliminates Additional Make-up Time

机译:用于多路径砾石包系统的创新同心4 1设计延伸了有效的可包装长度,并消除了额外的化妆时间

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A common problem for modern horizontal gravel pack operations is the development of an annular bridge that blocks the flow of gravel slurry and prevents formation of a complete pack.Causes of annular bridging include high-rate leakoff zones or swelling shale layers within the reservoir.Secondary flow path technologies enable slurry flow to bypass any annular bridge and complete the packing of an openhole annulus.Current secondary flow path technologies on the market either lack the flow configuration to extend farther than several hundred feet,or they add complicated makeup and running procedures to align and secure a secondary slurry flow path. A tube configuration has recently been developed to add redundancy to the flow path geometry as well as greatly increase the overall flow area,extending the effective packable length of the system.The 4 1 concentric tube design has been combined with an integral internal cross-coupling communication system, connecting tubes at each joint and adding no additional makeup time to the running procedure of conventional sand screens. This paper presents the results of full-scale gravel pack simulations with leakoff and an annular barrier. The prototype multi-path system was run horizontally inside a simulated 8-in.open hole.Slurry flow, prepared using conventional proppant in a viscous carrier gel or with ultra-low density proppant, successfully bypassed the sand dune created by the leakoff zone and the solid annular barrier,reaching all void areas and creating a complete pack. By enabling slurry flow to bypass any annular bridge and reliably complete the packing of longer and longer horizontal intervals,secondary flow path technology promises to provide a reliable,low-cost solution for delivering failure-free gravel pack completions.Emerging technology in this field strives to simplify running procedure,extend functional length of secondary flow paths and reduce relative packing time.
机译:现代水平砾石组件的常见问题是开发环形桥,其阻挡砾石浆料的流动并防止形成完整的包装。环形桥接包括储存器内的高速泄漏区或肿胀页岩层。很强流动路径技术使浆液流绕过任何环形桥梁,并完成露天环空的包装。市场上的二次流动路径技术缺少流动配置,以延伸到几百英尺,或者它们添加复杂的化妆和运行程序对齐并保护二次浆料流动路径。最近已经开发了一种管配置以增加流路几何形状的冗余,大大增加整体流量面积,延长了系统的有效包装长度。4 1个同心管设计与一体内部交叉耦合结合通信系统,在每个接头处连接管,并在常规沙漏的运行过程中不增加额外的化妆时间。本文介绍了具有泄漏和环形屏障的全尺寸砾石包装模拟结果。原型多路径系统在模拟的8-in.Open孔中水平地运行。使用常规支撑剂在粘性载体凝胶中或用超低密度支撑剂制备的流量,成功地绕过泄漏区产生的沙丘固体环形屏障,达到所有空隙区域并创建完整的包装。通过使浆料流绕过任何环形桥梁并可可靠地完成较长且较长且较长且较长的水平间隔的包装,二次流动路径技术承诺提供可靠,低成本的解决方案,可提供无故障的砾石包装完成。在此领域努力提供无故障的砾石包装。emerging技术为了简化运行过程,扩展二次流路径的功能长度并减少相对包装时间。

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