Lithologic Reservoirs ›› 2012, Vol. 24 ›› Issue (5): 116-119.doi: 10.3969/j.issn.1673-8926.2012.05.022

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Prediction method of polymer flooding operation cost based on gray principal component analysis

ZHOU Qing   

  1. Research Institute of Exploration and Development, PetroChina Daqing Oilfield Company Ltd., Daqing 163712, China
  • Online:2012-10-20 Published:2012-10-20

Abstract:

Polymer flooding has characteristics of high oil production rate and short production duration, complicated operation cost change rule, and its operation cost structure and prediction method are different from water flooding. Scientific prediction of polymer flooding operation cost is essential to control the cost of operations and establish a cost plan. Combining with the characteristics of polymer flooding development, this paper applied gray system theory and principal component analysis method to select the influencing factors, and then established prediction model to predict polymer flooding operation cost. The practical application proves that this method can be used to predict polymer flooding operation cost better and achieve the purpose of improving the prediction accuracy. It can provide a scientific basis for the rational preparation of development planning program.

Key words: lowpermeability reservoirs, rhombic inverted nine-spot areal well pattern, square inverted nine-spot areal well pattern, startup coefficient, yield formula

[1] 戴家权,王勇,冯恩民.油气资源勘探与开发的不确定性分析及最优策略[J].系统工程理论与实践,2004,(1):35-40.
[2] 孙旭光,张兆新,白鹤仙,等.灰色理论在克拉玛依油田操作成本预测中的应用[J].新疆石油地质,2005,26(6):704-706.
[3] 朱燕,陈梅香,温波,等.油田开发成本变动规律研究[J].商场现代化,2009,(22):7-8.
[4] 邓聚龙.灰色系统理论教程[M].武汉:华中理工大学出版社,1990:178-200.
[5] 彭得兵,唐海.灰色关联法在剩余油分布研究中的应用[J].岩性油气藏,2010,22(3):133-136.
[6] 周超,王秀芝.组合预测在油气操作成本预测中的应用研究[J].天然气勘探与开发,2009,32(4):78-80.
[7] 单娴,曹延亮.基于SPSS 主成分分析的油田采油成本控制研究[J].中国管理信息化,2010,12(3):38-40.
[8] 潘洋洋.原煤成本预测模型的探讨[J].中国矿业,2007,16(3):43-45.
[9] 李国锋.应用灰色关联分析法优选大牛地气田压裂井层[J].岩性油气藏,2011,23(1):114-117.
[10] 李武广,杨胜来,邵先杰,等.注水油田开发指标优选体系与方法研究[J].岩性油气藏,2011,23(3):110-114.
[11] 张立军,任英华.多元统计分析实验[M].北京:中国统计出版社,2008:102-119.
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