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首页> 外文期刊>Open Journal of Yangtze Oil and Gas >Evaluation of Electrical Submersible Pump on Field Production Network Optimization in Niger Delta Oilfield
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Evaluation of Electrical Submersible Pump on Field Production Network Optimization in Niger Delta Oilfield

机译:尼日尔三角洲油田现场生产网络优化对电气潜水泵的评价

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摘要

Complexity arises when trying to maximize oil productions from fields using Electrical Submersible Pumps (ESP). The complexity increases with the increase in the number of reservoirs and wells in a particular field. Individual well’s ESP frequencies have to be constantly updated to ensure optimum oil productions from the field. The choice of the ESP frequency to be used must come from sound engineering decisions which do not come from mere intuition but must be backed up by mathematical models and computer simulations. This study proposes to evaluate field production network optimization on ESP lifted wells using quadratic sequential programming techniques. The optimization approach seeks to determine the ESP frequency for each well that will lead to the maximum field oil production while honouring the field operational constraints. Two reservoirs and five wells were considered. The non-linear optimization problem for the ESP lifted wells in the field was formulated with their boundary conditions. The simulations were performed in Prosper and GAP software. Prosper software was used in building the individual well’s ESP models for the five wells in the field. Individual well’s model in Prosper was exported to GAP and simulations were run in GAP for the field network system. GAP simulations were run in two cases: case 1 comprises ESP simulation without optimization while case 2 comprises ESP simulation with optimization. For case 1, fixed values of ESP frequency were selected for each well and the GAP software calculates the production rates from the wells in the network accruing from the ESP frequencies inputted. For case 2, there was no input ESP frequency as the GAP software was allowed to calculate based on optimization algorithms, the best suitable ESP frequencies for each well in the field that will lead to the maximum total oil production in the field network while honouring the operational constraint imposed on the systems in the field. From the results, it was realized that at the basis of well, the higher the ESP frequency, the higher the well’s production rates. Sensitivities on the effects of separator pressure on production rates show that separator pressures affect the well’s productions rates. A reduction in separator pressure from 200 psig to 80 psig led to a 1.69% increase in field oil rate. Comparison of results for case 1 and case 2 showed that ESP field network simulation with optimization yields had a higher field production rate than ESP field network simulations without optimization. There was an increase in oil rate of 1.16% and 2.66% for constraints 1 and 2 when ESP simulation was done with optimization rather than without optimization. Also, simulation with optimization comes with higher pump efficiency than simulation without optimization.
机译:在尝试使用电气潜水泵(ESP)的田地中最大化油制品时出现复杂性。随着特定领域的储层数量的增加,复杂性增加。个人井的ESP频率必须不断更新,以确保来自该领域的最佳油制品。使用的ESP频率的选择必须来自声音工程决策,这些决定不仅仅是直觉,而且必须通过数学模型和计算机模拟来备份。本研究建议使用二次顺序编程技术来评估ESP提升井的现场生产网络优化。优化方法寻求确定每个井的ESP频率,这将导致最大的现场油生产,同时纪念现场操作约束。考虑了两个水库和五个井。该领域ESP提升井的非线性优化问题与其边界条件配制。模拟是在繁荣和差距软件中进行的。繁荣软件用于为该领域的五个井构建个人井的ESP模型。个人井的繁荣模式出口到差距,模拟在现场网络系统的差距中运行。在两种情况下运行差距模拟:案例1包括ESP仿真而无需优化,而案例2包括ESP仿真。对于案例1,为每个孔选择ESP频率的固定值,间隙软件从ESP频率输入的网络中的井中计算了从井中的井中的生产率。对于案例2,没有输入ESP频率,因为允许基于优化算法计算间隙软件,该领域中每个孔的最佳合适的ESP频率将导致现场网络中的最大总油生产,同时尊重在现场系统中施加的操作约束。从结果中,它实现了,在井的基础上,尤其是井越高,井的生产率越高。对分离器压力对生产率影响的敏感性表明,分离器压力会影响井的产品速率。从200psig到80 psig的分离压力降低导致现场油速率增加1.69%。案例1的结果和案例2的比较显示,具有优化产量的ESP现场网络仿真比ESP现场网络模拟更高的现场生产率而无需优化。当ESP仿真完成的时间而不是无优化时,约束1和2的吸油率增加1.16%和2.66%。此外,通过无优化的模拟,具有优化的模拟具有更高的泵效率。

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