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首页> 外文期刊>Indian Journal of Science and Technology >Estimation of Input Pump Pressure in Conditions of Low Foaming Gas-Content Oil Pumping
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Estimation of Input Pump Pressure in Conditions of Low Foaming Gas-Content Oil Pumping

机译:低泡沫含气量抽油条件下输入泵压力的估算

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Objectives: The core intention is to estimate input of submersible electric pump pressure in producing wells with using correlation during pumping gas-liquid mixture under oil low foaming conditions. Methods/Statistical Analysis: Known methods for calculating input pressure pump of high gas-content oil in well annulus are low-information and have poor accuracy. Based on the comparison and generalization of the data of comprehensive wellhead and deep well studies, we developed correlation dependencies for determining the density of a gas-liquid mixture taking into account the specific features of oil foaming in wells of the Upper Kama fields. Findings: Research results proved the influence of the content of high molecular compounds (resins and asphaltenes) determining the oil viscosity as well as gas-content on foaminess; wherein oil foaming properties decrease with increasing gas content. We developed equations for estimation relative density liquid mixture into the well annulus from pump submersion under dynamic level and oil foaming for mentioned above fields are obtained for the first time. These equations are based on the analysis of deep and estuarine well testing. It is shown that the oil gas-content affects the density of low foaming oil more than foaminess. According to the result to representativeness estimation of the obtained equations noted as accuracy sufficient for practical results to determine the density of the mixture in annulus and the input pump pressure. Application/Improvements: The basic field of application for the proposed approach is associated with exploitation of oil production wells. The results can be used for optimization of pump working in wells.
机译:目标:核心意图是利用在低油性起泡条件下泵送气液混合物期间的相关性来估算生产井中的潜水电泵压力输入。方法/统计分析:已知计算井眼环空中高含气量油的输入压力泵的方法信息少且准确性差。在对综合井口和深井研究数据进行比较和归纳的基础上,我们考虑到了上卡马油田的井眼中石油泡沫的具体特征,开发了用于确定气液混合物密度的相关性相关性。发现:研究结果证明,高分子化合物(树脂和沥青质)的含量决定油的粘度以及气体含量对泡沫性的影响;其中油的起泡性能随气体含量的增加而降低。我们开发了用于在动态水平下从泵浸没到井环空中的相对密度液体混合物的方程式,并且首次获得了上述领域的油泡沫。这些方程式基于对深层和河口试井的分析。结果表明,含气量比起泡沫性对低泡油密度的影响更大。根据结果​​的代表性,对所得方程的代表性进行估计,其准确性足以使实际结果确定环空中混合物的密度和输入泵压力。应用/改进:拟议方法的基本应用领域与石油生产井的开采有关。该结果可用于优化井中泵的工作。

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