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Heating of heavy oil by circulating hot water in closed double casing in ultra-deep wells

机译:通过在超深井的密闭双套管中循环热水加热重油

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摘要

In heavy oil production, the loss of energy to ambient surroundings decreases the temperature of the heavy oil flowing upwards in a vertical wellbore, which increases the oil viscosity and the oil may not flow normally in the wellbore. Therefore, it is necessary to lower the heavy oil viscosity by heating methods to allow it to be lifted easily. Heating of heavy oil in an oil well is achieved by circulating hot water in annuli in the well (tubing-casing annulus, casing-casing annulus). In this paper, based on heat transfer principles and fluid flow theory, a model is developed for produced fluids and hot water flowing in a vertical wellbore. The temperature and pressure of produced fluids and hot water in the wellbore are calculated and the effect of hot water on heavy oil temperature is analyzed. Calculated results show that the hot water circulating in the annuli may effectively heat the heavy oil in the tubing, so as to significantly reduce both oil viscosity and resistance to oil flow.
机译:在重油生产中,能量损失到周围环境降低了在垂直井眼中向上流动的重油的温度,这增加了油的粘度,并且油可能无法在井眼中正常流动。因此,有必要通过加热方法降低重油粘度以使其易于提升。油井中的稠油加热是通过使热水在油井的环形空间(套管环,套管环)中循环来实现的。在本文中,基于传热原理和流体流动理论,建立了一个模型,用于垂直井眼中的产出液和热水流动。计算井眼中采出液和热水的温度和压力,并分析热水对重油温度的影响。计算结果表明,环空中循环的热水可以有效地加热管道中的重油,从而显着降低油的粘度和抗油流动性。

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