首页> 外文会议>SPE Western Regional Meeting >A Practical Approach to History-Matching Water-recycling in Waterflood Reservoir Simulation-Method and Case Studies in South Belridge Diatomite Waterflood
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A Practical Approach to History-Matching Water-recycling in Waterflood Reservoir Simulation-Method and Case Studies in South Belridge Diatomite Waterflood

机译:南方贝德里亚塔马石水上历史与水储层仿真水回收水回收的实用方法

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Premature water breakthrough (water recycling) negatively affects waterfloods in low permeability, naturally fractured reservoirs such as the South Belridge Diatomite. Water recycling reduces the effectiveness of waterflooding by partially or entirely bypassing the reservoir matrix where most of the reservoir fluids are stored. Reservoir simulation is handicapped by the inability to accurately characterize the architecture and dynamic nature of the natural and induced fractures that yield high conductivity flow paths between injectors and producers. Generally, reservoir simulation can only represent the effective fluid flow by ignoring the ineffective water production that bypasses the matrix. Detailed production performance analysis yields a practical approach to history-match the waterflood process under premature water breakthrough conditions. Basic reservoir rock-fluid flow characterization parameters must be tuned by history-match of primary production before water injection related effects dominate fluid flow under waterflooding. An analytical waterflood method is used to diagnose premature water breakthrough on a well-to-well basis and to calculate the volume of ineffective water injection. Effective injection and water production volumes are recalculated and used to achieve a history-match that honors oil production, reservoir pressure and injection/production volume balance. A field-scale case study is presented to demonstrate the application of the proposed approach.
机译:过早的水突破(水循环)对低渗透性的水闪闪发热,自然骨折的储层,如南方贝德里亚胺。水循环通过部分或完全绕过水上储存基质来降低水上储存的有效性,其中大多数储存流体被储存。储层模拟通过无法准确地表征天然和诱导的骨折的结构和动态性质,从而产生喷射器和生产者之间的高电导率流动路径。通常,储层模拟只能通过忽略绕过矩阵的无效水量来表示有效的流体流动。详细的生产性能分析产生了历史匹配在早产水上突破条件下的水运过程的实用方法。基本储层岩石流体流动表征参数必须通过初级生产之前的历史匹配,然后在水注入相关效果在水上造成的压制流体流动。分析水泡法用于诊断良好进入良好的水分突破,并计算无效的注水量。重新计算有效的注射和水产量,并用于实现历史匹配,荣誉石油生产,储层压力和注射/生产体积平衡。提出了一种典型的案例研究以证明所提出的方法的应用。

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