ISSN 1673-8217 CN 41-1388/TE
主管:中国石油化工集团有限公司 主办:中国石油化工股份有限公司河南油田分公司
牛彩云, 李大建, 朱洪征, 赵晓伟, 吕亿明. 2013: 低渗透油田多层开采层间干扰及分采界限探讨. 石油地质与工程, 27(02): 118-120+142.
引用本文: 牛彩云, 李大建, 朱洪征, 赵晓伟, 吕亿明. 2013: 低渗透油田多层开采层间干扰及分采界限探讨. 石油地质与工程, 27(02): 118-120+142.
2013: Study on the interlayer interference and production boundary in multiple-zone production for low-permeability oilfield. Petroleum Geology and Engineering, 27(02): 118-120+142.
Citation: 2013: Study on the interlayer interference and production boundary in multiple-zone production for low-permeability oilfield. Petroleum Geology and Engineering, 27(02): 118-120+142.

低渗透油田多层开采层间干扰及分采界限探讨

Study on the interlayer interference and production boundary in multiple-zone production for low-permeability oilfield

  • 摘要: 为掌握低渗透油田多层开采层间干扰情况,以长庆油田一套井网两层开采试验区为研究对象,从影响层间干扰两个主要因素渗透率级差和层间压差入手,借助油井流入动态方程,利用各种生产资料、测试资料建立合采井流入动态曲线并进行了分析,分析结果表明:对于低渗透油田,其渗透率级差引起的层间干扰相对较小,影响各产层产量主要为层间流压差,确定了层间压差小于3MPa普通泵笼统合采,层间压差大于3MPa分层开采的技术界限。现场流压测试和分层采油结果验证了这一结论的正确性。

     

    Abstract: In order to grasp the situation about interlayer interference on the low permeability oilfield, the test area in which dual production with one well pattern has been selected as research object in Changqing oilfield. In the paper, two main factors, permeability ratio and interlayer pressure difference that affected interlayer interference by using a variety of production and test data have been analyzed and the co-production wells IPR curve has been established. The analysis results indicate as for low permeability oilfield, the interlayer interference caused by permeability max-min ratio is relatively small. In addition, the results find that the reservoir production in each layer is mainly affected by layer flow pressure difference. Therefore, conventional pump will be selected for commingled production when interlayer pressure is lower than 3 MPa, multiple-zone production technology will be selected when the pressure is greater than 3MPa. Based on this concept, the relationship of the flow pressure and production has been calculated. The following conclusions have been reached: Site on the upper and lower flow pressure testing and separate layer recovery results verify the correctness of this conclusion. The study is beneficial for exploring the similar reservoirs in Changqing oilfield.

     

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