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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Particle swarm optimization of thermal enhanced oil recovery from oilfields with temperature control
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Particle swarm optimization of thermal enhanced oil recovery from oilfields with temperature control

机译:粒子群优化热增强型油田具有温度控制的油恢复

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Thermal enhanced oil recovery (EOR) methods are commonly used to extract heavy oil from oilfields. Hot water injection into reservoirs reduces oil viscosity and increases its mobility to move toward production wells. Water flood EOR projects are traditionally implemented with rate and bottom-hole pressure (BHP) control of injection and production wells to recover more oil from reservoirs. Whereas, water injection temperature can also play an important role in overall oil recovery, especially in sandstone rocks in which the relative permeability is a function of both the temperature and saturation. The present study aims to optimize hot water injection process in heavy oilfields using particle swarm optimization (PSO) approach. Effects of water injection temperature, and the water injection rate and BHP of producers are investigated on cumulative oil production of heavy oil reservoirs. First, through optimization of the hot water flooding process in a 2D heterogeneous reservoir with 13 wells, it has been shown that optimal values exist for the water injection temperature of different wells. Secondly, the idea has been tested in a 3D field reservoir successfully. Results show that PSO can properly be implemented for optimization of hot water injection projects. Furthermore, optimal control of water injection temperature can improve oil recovery. (C) 2017 Elsevier Ltd. All rights reserved.
机译:热增强的采油(EOR)方法通常用于从油田中提取重油。热水注入水库可降低油粘度并增加其移动性以走向生产井。潮流EOR项目传统上利用速率和底部孔压力(BHP)控制,注射和生产井控制,以从储层中恢复更多的油。鉴于水喷射温度也可以在整体内部采油中发挥重要作用,特别是在砂岩岩石中,其中相对渗透性是温度和饱和度的函数。本研究旨在利用粒子群优化(PSO)方法优化重油场中的热水喷射过程。注水温度的影响,以及生产者的累积油储量累积产量和生产者的注水速率和非洲权利。首先,通过用13个孔的2D异构储层优化热水驱化,已经证明存在不同孔的水喷射温度的最佳值。其次,该想法已经成功地在3D场储层中进行了测试。结果表明,可妥善实施PSO以优化热注水项目。此外,水喷射温度的最佳控制可以改善溢油。 (c)2017 Elsevier Ltd.保留所有权利。

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