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Experimental studies of steam and steam-propane injection using a novel smart horizontal producer to enhance oil production in the San Ardo field.

机译:使用新型智能卧式采油器提高圣阿多油田采油量的蒸汽和蒸汽丙烷注入的实验研究。

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摘要

A 16x16x5.6 in. scaled, three-dimensional, physical model of a quarter of a 9-spot pattern was constructed to study the application of two processes designed to improve the efficiency of steam injection. The first process to be tested is the use of propane as a steam additive with the purpose of increasing recovery and accelerating oil production. The second process involves the use of a novel production configuration that makes use of a vertical injector and a smart horizontal producer in an attempt to mitigate the effects of steam override.; The experimental model was scaled using the conditions in the San Ardo field in California and crude oil from the same field was used for the tests. Superheated steam at 190--200°C was injected at 48 cm 3/min (cold water equivalent) while maintaining the flowing pressures in the production wells at 50 psig. Liquid samples from each producer in the model were collected and treated to break emulsion and analyzed to determine water and oil volumes.; Two different production configurations were tested: (1) a vertical well system with a vertical injector and three vertical producers and (2) a vertical injector-smart horizontal well system that consisted of a vertical injector and a smart horizontal producer divided into three sections. Runs were conducted using pure steam injection and steam-propane injection in the two well configurations.; Experimental results indicated the following. First, for the vertical configuration, the addition of propane accelerated oil production by 53% and increased ultimate recovery by an additional 7% of the original oil in place when compared to pure steam injection. Second, the implementation of the smart horizontal system increased ultimate oil recovery when compared to the recovery obtained by employing the conventional vertical well system (49% versus 42% of the OOIP).
机译:构建了一个16x16x5.6 in。比例缩放的9点模式的四分之一的三维物理模型,以研究设计用于提高蒸汽注入效率的两个过程的应用。要测试的第一个过程是使用丙烷作为蒸汽添加剂,目的是提高采收率并加速采油。第二种方法涉及使用一种新颖的生产结构,该结构利用立式喷射器和智能卧式生产器,以减轻蒸汽超控的影响。使用加利福尼亚州圣阿多油田的条件对实验模型进行了缩放,并将来自同一油田的原油用于测试。在保持生产井中流动压力为50 psig的同时,以48 cm 3 / min(当量冷水)注入190--200°C的过热蒸汽。收集模型中每个生产商的液体样品,进行处理以破坏乳液,并进行分析以确定水和油的体积。测试了两种不同的生产配置:(1)带有垂直注入器和三个垂直生产井的垂直井系统,以及(2)垂直注入器-智能水平井系统,该系统由垂直注入器和智能水平生产井组成,分为三个部分。在两个井配置中使用纯蒸汽注入和蒸汽丙烷注入进行运行。实验结果表明如下。首先,对于垂直构型,与纯蒸汽注入相比,丙烷的添加使原油的产量提高了53%,最终采收率又提高了7%。其次,与采用常规垂直井系统所获得的采收率相比,智能水平系统的实施提高了最终的石油采收率(分别为OOIP的49%和42%)。

著录项

  • 作者

    Rivero Diaz, Jose Antonio.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Petroleum.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 160 p.
  • 总页数 160
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 石油、天然气工业;
  • 关键词

  • 入库时间 2022-08-17 11:39:01

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