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The concept of perfection technological work regimes of system “reservoir-well-pipeline” in conditions of watering gas wells and the way of its realization

机译:气井注水条件下系统“储井管道”完善技术工作制度的概念及其实现途径

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Steady work well determine the diameter of the tubing, the increase of which reduces hydraulic losses and allows more efficient use of the available pressure drop, but reduces the rate of flow in the tubing, which can lead to a frozen liquid in the barrel and then to self-damping of well.This paper presents the concept perfection technological regimes work of the system “reservoir-well-pipeline” in watering gas wells, which is the separation of the products on the gas and liquid flows. Through the mine submersible pump the liquid will be in the tubing at the wellhead, and the gas extracted in the annular space. The analytical dependence of the system “reservoir-well-train” in the conditions of irrigation of gas wells and developed a system of simulation modeling allows to prove the parameters of technological processes mechanized water pumping for maximum flow rate of gas at minimum cost of produced energy
机译:稳定的工作状态决定了油管的直径,增加油管的直径可以减少液压损失,并可以更有效地利用可用的压降,但会降低油管中的流速,这会导致机筒中的液体冻结,然后本文提出了注水气井中“油藏-井-管道”系统的概念完善技术方案的工作,即将气液两流中的产物分离。通过矿井潜水泵,液体将进入井口的油管中,而气体则从环形空间中抽出。对气井灌溉条件下的“油藏-井-井”系统的分析依赖性以及开发的模拟建模系统可以证明以最小的生产成本实现最大流量的机械化抽水的机械化工艺参数能源

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