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The Analysis of Hydrates Frozen Blocking in Fire Flooding Exhaust Gas of Heavy Oil

机译:重油驱火废气中水合物冻结堵塞的分析。

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The No. 56 desulfurization tower pipeline network of Dawn production plant in Liaohe Oilfield is fire flooding exhaust gas collecting pipe. Since put into production, because of the large amount of gas and liquid, fine pipelines and big quantities of bends, the frozen blocking often occurs in winter. The site only adds methanol inhibitors on the basis of production experience, although the frozen blocking phenomenon is eased, it also shows frozen blocking phenomenon in the well interchanges and ups and downs. Now aiming at the problem, based on the percentage of hydrate cross-sectional area, through the establishment of exhaust gas pipe network model and mathematical model, we analyzed how the various factors (temperature, pressure, ground temperature, throughput) influenced the frozen blocking of pipe networks, and the results showed that the cross-sectional area percentage of 37.6% is frozen blocking break points, and the input's effect on the frozen blocking is the largest. The error in this mathematical model between the prediction of frozen blocking position and actual position is within the scope of the permit (5%). So it can guide the production work in the winter, to reduce the loss of oil field, and increase the economic benefit.
机译:辽河油田曙光生产厂脱硫塔56号管网为消防排烟集气管。自投产以来,由于大量的气体和液体,精细的管道和大量的弯头,冬季经常发生冻结阻塞。该现场仅根据生产经验添加了甲醇抑制剂,尽管冻结阻塞现象有所缓解,但在井的互换和起伏中也显示出冻结阻塞现象。现在针对该问题,基于水合物截面积的百分比,通过建立排气管网络模型和数学模型,我们分析了各种因素(温度,压力,地温,通过量)如何影响冻结阻塞结果表明,横截面积为37.6%的是冻结阻塞点,而输入对冻结阻塞的影响最大。在此数学模型中,冻结冻结位置的预测与实际位置之间的误差在许可范围之内(5%)。因此可以指导冬季生产工作,减少油田损失,增加经济效益。

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