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Configuration Selection Based On Lifecycle Cost Of Subsea Production System: Case Of Indonesia Deepwater Field

机译:基于海底生产系统生命周期成本的配置选择:印度尼西亚深水场的情况

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Subsea tie back systems are important parts of oil and gas production project. The decision to select a subsea tie-back configuration with the objective goal of lowest lifecycle cost can be configured in multiple ways based on the field specifications and operator’s approach to operation. This paper presents an Analytic Hierarchy Process (AHP) method to determine economical levels of subsea tie-back wells configuration, based on lifecycle cost of subsea deepwater production systems with respect to wells number alternative. Field reservoir located in deepwater of eastern Indonesian with the depth of 1400 meters and field life 40 years is studied. From this study, it is identified that the most economical configuration in subsea production systems: satellite tie-back configuration to develop small field with 6 numbers of wells; for 12 numbers of wells, template subsea tie-back configuration is the best.
机译:海底焊接系统是石油和天然气生产项目的重要零件。 可以根据现场规范和操作员操作方法以多种方式配置选择具有最低生命周期成本的客观目标的海底连接配置的决定。 本文介绍了一个分析层次过程(AHP)方法,以确定基于海底深水生产系统的寿命成本相对于井号码替代方案的生命周期成本。 位于印度尼西亚东部深水的田间水库,深度为1400米,野外生命40年。 从本研究开始,它被认为是海底生产系统中最经济的配置:卫星连接配置,开发具有6个井的小场; 对于12个数量的井,模板海底连接配置是最好的。

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