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Computation method for water influx in different layers of natural edge water

机译:天然边缘水不同层入水量的计算方法

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To scientifically and objectively evaluate the development effectiveness and separated layer production of favorable natural water edge reservoir and to improve the computation method for volumes of water influx in different layers, this study applies a novel technique to simulate the process of natural water invasion by utilizing various geological and single wells’ data and deploying virtual injection wells at the oil-water interface of arbitrary shape. The denser the virtual injection wells are deployed, the more precise the water invasion process can be. This study calculates water influx direction and intrusion resistance of natural edge water by discriminating connection relationship of separated layer between the virtual injection wells and production wells. Referring to hydropower similarity principle, it calculates intrusion resistance of each layer and total invasion resistance of the reservoir, thus deriving the volume of water influx of each layer. The new method has been implemented in software and applied to over ten blocks in Dagang Oilfield, Liaohe Oilfield, Jidong Oilfield, etc. The results have shown that the method is more accurate for splitting production data to calculate separated layer water influx volume in each unit in natural water edge reservoir.
机译:为了科学,客观地评价有利的天然水边缘储层的开发效果和分隔层产量,并改进不同层涌水量的计算方法,本研究运用一种新颖的技术,通过利用多种多样的方法来模拟天然水的入侵过程。地质和单井数据,并在任意形状的油水界面部署虚拟注水井。虚拟注入井的部署越密集,入侵水的过程就越精确。通过区分虚拟注水井与生产井之间分离层的连接关系,计算天然边缘水的入水方向和抗渗能力。参照水电相似性原理,计算出各层的入水阻力和储层的总侵入阻力,从而得出各层的入水量。该新方法已在软件中实现,并已应用于大港油田,辽河油田,冀东油田等十多个区块。结果表明,该方法对生产数据进行分割,计算出各单元的分层注水量更为准确。在天然水边缘水库中。

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