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Improved Waterflood Analysis Using the Capacitance-Resistance Model Within a Control Systems Framework

机译:使用控制系统框架内的电容电阻模型改善了水泡分析

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The Capacitance Resistance Model (CRM) is a fast way for modeling and simulating gas and water-flooding recovery processes, making it a useful tool for improving flood management in real-time. CRM is an input-output and. material balance-based model, and requires only injection and production history, which are the most readily available data gathered throughout the production life of a reservoir. In this work, the CRM input-output relationship is explored by representing the CRM with state-space (SS) equations. The linear system SS equations define the relationship between inputs, outputs and states to completely describe system dynamics. The SS-CRM is a multi-input/multi-output (matrix) representation, which provides more insight into reservoir behavior than analyzing performance on a well-by-well basis. Thus, it is computationally faster and easier to apply in fields with large numbers of wells. The CRM parameters are estimated using a grey-box system identification algorithm. The matrix form of the CRM history matching and a sensitivity analysis to the CRM parameters estimates are presented. Minimal realizations and reduced order models are easily obtained with the SS-CRM approach. The performance of three CRM representations are analyzed: integrated (ICRM), producer based (CRMP) and injector-producer based (CRMIP). The methodology developed here is tested in two reservoir systems, homogeneous with flow barriers and channelized. We find that the ICRM does not reproduce the rate fluctuations as well as the CRMP and CRMIP. The CRMP works well for wells in low heterogeneity regions but not as well as the CRMIP in more heterogeneous areas, e.g. near the flanks of channel deposits. This new approach facilitates closed-loop reservoir management by enabling CRM's use for linear control algorithms, which can improve tracking performance and predictability, and is amenable to real-time optimization.
机译:电容电阻模型(CRM)是一种用于建模和模拟气体和水洪水恢复过程的快速方法,使其成为改善实时洪水管理的有用工具。 CRM是一个输入输出和。基于物质平衡的模型,只需要注射和生产历史,这是整个水库生产寿命的最容易获得的数据。在这项工作中,通过表示具有状态空间(SS)方程的CRM来探索CRM输入输出关系。线性系统SS方程定义输入,输出和状态之间的关系,以完全描述系统动态。 SS-CRM是一种多输入/多输出(矩阵)表示,它提供了更多的深入了解水库行为,而不是在良好良好的基础上分析性能。因此,它在计算上更快,更容易应用于具有大量井的字段。使用灰度盒系统识别算法估计CRM参数。提出了CRM历史匹配的矩阵形式和对CRM参数估计的灵敏度分析。用SS-CRM方法很容易获得最小的实现和减少的订单模型。分析了三个CRM表示的性能:基于综合(ICRM),基于生产者(CRMP)和基于CRMIP)的生产者。这里开发的方法在两个储层系统中进行了测试,均匀的流动屏障和通道化。我们发现ICRM不会重现速率波动以及CRMP和CRMIP。 CRMP在低异质性地区的井中工作良好,但在更异质区域中没有CRMIP,例如,CRMIP。靠近通道沉积物的侧面。这种新方法通过支持CRM用于线性控制算法来促进闭环储层管理,这可以提高跟踪性能和可预测性,并且可用于实时优化。

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