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An Optimizing Method for Production Systems of Multi-reservoir Gas Fields Using the Branch-system

机译:分支系统的多储层气田生产系统优化方法

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The analysis of production systems in multi-reservoir gas fields is required to optimize production rates and enhance ultimate recovery. Conventional methods involve enormous computational efforts since production systems from reservoirs to a gathering station have been considered as one structure, and production rates are optimized step-by-step in terms of objective functions. In this study, a new technique is developed to reduce the structural complexities of previous techniques and to consist of branch-systems including reservoirs and a surface branch-system without reservoirs. All branch-systems can be treated independently in this method. The decision variables including pressures and production rates in a branch-system, which are determined by the size of reservoir, the producing capacity of reservoir, and the initial pressure of reservoir, are updated simultaneously at every iteration step to accelerate its convergence. The method can analyze multi-reservoir gas fields with a fixed gross production rate at the gathering station efficiently. The results for two fields have shown that the method required less computational efforts and provided relatively accurate outputs for conventional techniques applied to two fields.
机译:需要对多储层气田的生产系统进行分析,以优化生产率并提高最终采收率。常规方法涉及大量的计算工作,因为从储层到采集站的生产系统已被视为一种结构,并且根据目标功能逐步优化了生产率。在这项研究中,开发了一种新技术来降低先前技术的结构复杂性,并由包括储层的分支系统和不具有储层的地表分支系统组成。所有分支系统都可以用这种方法独立处理。决策变量包括分支系统中的压力和生产率,这些决策变量由储层大小,储层产能和储层初始压力确定,并在每个迭代步骤中同时更新,以加快其收敛速度。该方法可以有效地分析采集站总产量固定的多储集层气田。两个领域的结果表明,该方法需要较少的计算工作,并为应用于两个领域的常规技术提供了相对准确的输出。

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