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Research and Application of Overall Energy Consumption Optimization Technology Under Low Oil Price

机译:低油价下整体能耗优化技术的研究与应用

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At present in China,the prevailing optimization method for an individual rod pumped well pursues the maximum system efficiency under the condition of given production,which is ineffective for some high water cut oil wells and contributes a little to the oil production of a block.As a result,the maximum overall profit cannot be achieved.With the continuance of low oil prices and the increase of artificial lift cost, the individual well optimization method can no longer meet the requirements for field energy conservation and cost reduction.The energy consumption and contribution to oil production of every well are analyzed. Based on an analysis of the inter-relations between individual well production,energy consumption and efficiency,the energy consumption of individual wells and their contributions to oil production by utilizing relevant analytical approach,an objective function with the minimum overall block energy consumption is established in this paper to realize the overall profit maximization of block by allocating individual well fluid production,optimizing production parameters and using non-decreasing oil production as constraint condition.In view of the established optimization model characterized by complicated influence factors, multiple optimization parameters,enormous calculations and several constraint conditions,a penalty function algorithm is applied to optimization to convert a constrained optimization problem into the solution of an unconstrained optimization problem.In this way,fast solution of the model is realized.154 wells of one oil production plant in Daqing Oilfield were subjected to overall block optimization.Since site execution of an optimization program,there are 63 wells with an increased fluid production,there are 91 wells with a decreased fluid production,the total oil production has basically remained unchanged,the total fluid production has decreased by 10.2%,the total energy consumption has decreased by 16.3%,and the average system efficiency has been improved by 5.1%.It is shown by field application that this technology can further decrease the overall cost and increase the overall profit of a block by allocating per well liquid production and optimizing production parameters comparing with the previous individual well optimization. It may be beneficial to any teams who are looking to lift more oil with less energy consumption.
机译:目前在中国,各个杆泵浦的普遍优化方法在给定生产条件下追求最大的系统效率,这对于一些高水位油井无效,略微贡献块的石油生产。结果,最大的整体利润无法实现。在低油价和人工升降成本的增加,各种优化方法不再符合现场节能和降低成本的要求。能源消耗和贡献。分析了每种井的石油生产。基于对个人井生产,能源消耗和效率之间的关系的分析,通过利用相关的分析方法,建立了具有最小总体能耗的目标函数的个人井的能耗及其对石油生产的贡献本文通过分配单个井流体生产,优化生产参数和使用非降低的石油产量作为约束条件来实现块的整体利润最大化。在既定的优化模型的视图,其特征在于复杂影响因素,多优化参数,巨大的计算并且若干约束条件,惩罚功能算法应用于优化,以将约束优化问题转换为不受约束优化问题的解决方案。在这种方式,模型的快速解决方案是在大庆油田的一个石油生产厂的井中实现了.154井是subjec.到整体块优化.SINCE网站执行优化计划,有63个井流量增加,有91个井流体生产,总油产量基本保持不变,总流体产量减少了10.2%,总能耗减少了16.3%,平均系统效率得到了5.1%的提高了5.1%。这是通过现场应用显示的,这项技术可以通过分配来进一步降低整体成本并提高块的整体利润与以前的个人井优化相比,每井液体生产和优化生产参数比较。对于任何寻求升高更多油的团队可能会有利于较少能耗的团队。

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