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Intelligent Waterflooding Development of High-Permeability Reservoirs at the Late Development Stage

机译:智能水土局在延迟开发阶段的高渗透水库开发

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In China,the initial development program was”early zonal water injection”for the reservoirs with insufficient natural drives and low formation-saturation pressure differential. At present,the oilfields have successively been progressing into the late development stage with high water cut. Especially in highpermeability reservoirs,water fingering through a single layer results in poor development response. The objective of this paper is to efficiently control invalid water cycling and realize a smooth flooding profile. A technology for whole-process monitoring and controlling in zonal injection has been developed for waterflooding reservoirs based on cable-controlling approach. This technology can constantly monitor realtime flowrate,cumulative volume injected,tubing pressure and casing pressure,as well as intelligently adjust the injection rate according to the allocation in the development program,thereby realizing fine zonal injection. As a demonstration,a typical block characterized by the high permeability(~100 mD in average)and being at the late development stage with high water cut(96.8%),was chosen to conduct the follow-up study and evaluate waterflooding efficiency of high-permeability reservoirs. There are 54 water injectors connected to 98 oil producers in the demonstration block. The data for one consecutive year upon implementation of the technology were collected and then analyzed. The analysis results illustrated that the water absorption profile was improved and the water fingering was efficiently controlled. The monthly rising rate of the composite water cut in the demonstration block decreased from 0.1%(value before the implementation)to 0.02%,and even to ?0.027% in some individual well groups(which means the composite water cut was reduced);77.5% of sandbody thickness in some individual wells has been producing,compared to 50.7% before the implementation,achieving remarkable effect. As can be seen,this technology is of great guiding significance for waterflooding development of high-permeability reservoirs at the late development stage with high water cut.
机译:在中国,最初的发展计划是”早纬向注水”与不足自然驱动器和低地层饱和压力差的水库。目前,油田先后被进步与高含水后期开发阶段。特别是在highpermeability水库,通过在显影反应不佳的单层结果水指法。本文的目的是有效控制无效水循环,并实现平滑的注入曲线。一种全过程的监测和纬向喷射控制技术已经发展了基于有线控制方法注水油藏。这种技术可以不断地监视实时流量,累积体积注射,管道压力和壳体压力,以及根据在开发程序中的分配作为智能调整喷射率,从而实现细带状喷射。作为示范,一个典型的块,其特征在于所述高磁导率(〜100毫达西的平均)并在高含水(96.8%)的后期发展阶段,被选择以进行后续研究和评价注水高的效率-permeability水库。有在示范块连接到98个产油国54水喷射器。对于在实施该技术的一个连续两年收集数据,然后进行分析。分析结果示出的是水吸收曲线得到改善和水指法被有效地控制。综合含水在示范块的每月上升率从0.1%(实施前的值)降低到0.02%,并且甚至在某些个别井组0.027%(这意味着复合含水减少); 77.5砂体厚度%的个别井已生产,相比实施前50.7%,取得了显着的效果。可以看出,该技术具有很强的指导意义在高含水后期开发阶段注水高渗透油藏的开发。

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