首页> 外文会议>Annual convention of the indonesian petroleum association >INTEGRATED STUDY OF DOWN-HOLE WATER SINK TECHNOLOGY TO WATER CONING DEVELOPMENT IN THIN LAYERS
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INTEGRATED STUDY OF DOWN-HOLE WATER SINK TECHNOLOGY TO WATER CONING DEVELOPMENT IN THIN LAYERS

机译:薄孔水槽技术综合研究薄层浇灌开发

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Oil recovery can be significantly reduced by water coning. The most common cause of water coning is a large drawdown in the oil zone where the reservoir has an active bottom aquifer. Water coning reversal is important to ensure efficient oil production. There are several methods to prevent or delay water coning. A conventional method is to produce oil below its critical rate, but this is often too low to be economic. Another method is to establish a Down Hole Water Sink (DWS). DWS has been reported as successfully increasing oil production and controlling water coning problems. In this paper, a DWS design has been applied in a nodal analysis simulation for a dual-string completion. It has also been compare with Inflow Performance Window (IPW). The 1PW shows operation top and bottom in-flow rate for oil wells. This paper analysis the application of a DWS completion in an anisotropic reservoir to optimize oil wells and includes simulation results and sensitivities on field data. Using a numerical simulator populated with static and dynamic data, heterogeneity is introduced via permeability barriers between layers and permeability variations laterally near the well. In parallel, anisotropy was added to combine vertical representation of heterogeneous flow paths.
机译:水锥体可以显着减少溢油。水锥体最常见的原因是油区的大幅缩小,其中储存器具有活性底部含水层。水锥逆转对于确保有效的石油生产非常重要。有几种方法可以防止或延迟水束带。常规方法是生产低于其临界速率的油,但这往往太低而无法经济。另一种方法是建立一个下孔水槽(DWS)。据报道,DWS已成功增加石油生产和控制水对策。在本文中,DWS设计已应用于双字符串完成的节点分析模拟中。它也与流入性能窗口(IPW)进行了比较。 1PW显示油井的操作顶部和底部流速。本文分析了DWS完成在各向异性储层中的应用优化油井,包括对现场数据的仿真结果和敏感性。使用具有静态和动态数据填充的数值模拟器,通过在井附近的层间和渗透率变化之间的渗透性屏障引入异质性。并行地,加入各向异性以组合异质流动路径的垂直表示。

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