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Application of Integrated Dynamic Asset Modeling to Predict and Resolve Production Instabilities in an Offshore Facility,A Case Study,Mexico

机译:综合动态资产建模在海上设施中预测和解决生产稳定性的应用,墨西哥案例研究

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Integrated asset modeling has been used for the last decade with a wide technical application covering different challenges from field development to production optimization.Besides supporting the FEEDS and FEL studies for different purposes.Moreover,the technology has evolved in terms of integration and dynamic or transient simulation has been added as an extra element expanding the possibility to cover different challenges and workflows.The objective of this paper is to show how this dynamic integration(Dynamic integrated asset modeling)was applied to a common problem of several reservoirs that produce water and gas under different dynamic mechanisms(injection,aquifer and gas cap)to understand,from the reservoir perspective,the effects of gas and water conning over the entire production system.The methodology applied was using a refined sector model solved with numerical simulation and coupled with a transient multiphase flow simulator to see how pressure drop affect the contacts level and shape based on the petrophysical properties and under different production scenarios and generate different graphics to see how this phenomenon behaves.Besides a comparison with all the most analytical correlations used in the literature to identify gas and water conning was performed to see the differences among them and with this dynamic integrated approach.On the other hand,for the production side this coupled model was applied to an offshore facility to see these reservoir effects in the transport system and how they impact in the pipeline and riser due to this abrupt entrance of gas and water changing the flow conditions,flow patterns,pressure drop and creating some instabilities in the separators caused by severe slugging.The results of this analysis were very useful to understand the total production systems(reservoir-surface)behavior,predict the gas and water breakthrough,establish the critical rates to avoid these problems and see how the results differ in some cases with the common analytical correlations.Specific conditions in the pipeline and riser were established to quantify the slugging problems and evaluate different alternatives to eliminate the instabilities through proposing different scenarios such as gas injection in the riser,top side choking,etc.Application of this integrated approach has been very beneficial in recognizing the source of the problem,offer proper and feasible solutions in development and operational phases.In addition,validating and reducing uncertainty of related literature correlations and give to the production and reservoir engineers a quick and reliable way to know the critical rates that can support the decision-making process.
机译:综合资产建模已经过去十年使用了广泛的技术应用程序,涵盖了从现场开发到生产优化的不同挑战。基于不同目的的支持和饲料研究.Orouse,这项技术在集成和动态或动态或瞬态方面发展了仿真已被添加为额外的元素,扩大了涵盖不同挑战和工作流程的可能性。本文的目的是展示这种动态集成(动态集成资产建模)如何应用于生产水和天然气的几个水库的常见问题在不同的动态机制(注射,含水层和气体帽)下,从储层的角度来看,燃气和水施加在整个生产系统上的影响。应用的方法采用了用数值模拟解决的精制扇区模型,并与A耦合瞬态多相流动模拟器,了解压力下降如何影响联系人Lev基于岩石物理特性和不同的生产场景的EL和形状,产生不同的图形,看看这种现象的表现。与文献中使用的所有最具最具最具分析相关性的比较,以识别气体和水刺激,以便看到差异另一方面,对于这种动态综合方法,另一方面,对于生产方面,该耦合模型应用于海上设施,以便在运输系统中看到这些储层效应以及由于这种突然的入口,它们如何影响管道和提升机的影响气体和水改变流动条件,流动模式,压降和在严重的间隔引起的分离器中产生一些不稳定性。该分析的结果非常有用,可用于了解总生产系统(储层表面)行为,预测气体和水突破,建立避免这些问题的临界速率,并了解一些情况下的结果如何常见的分析相关性。建立了流水线和提升管中的特定条件,以量化折叠问题,并通过提出提出的提升器中的气体喷射等气体喷射等不同的场景来评估不同的替代方案以消除不稳定性的替代方案。方法在认识到问题的根源方面非常有益,在开发和运营阶段提供适当和可行的解决方案。此外,验证和减少相关文献相关性的不确定性,并提供生产和水库工程师的快速可靠的方式可以支持决策过程的临界费率。

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