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An integrated prediction model of hydrate blockage formation in deep-water gas wells

机译:深水气井中水合物堵塞形成的综合预测模型

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Hydrate formation and deposition in pipelines easily cause blockage in deep-water oil and gas development. Current studies on hydrate blockage in the wellbore of deep-water gas wells are dispersed. In this study, considering the variations in temperature and pressure, and the characteristics of hydrate behaviors, an integrated prediction model for hydrate blockage formation in deep-water gas wells was developed. The model results calculated using the model were in good agreement with the laboratory data for the flow loop and the field-measured data. Using the integrated model, the distribution of the hydrate stability region and the laws of the hydrate layer growth in the wellbore of deep-water gas wells can be accurately predicted, which are basis for assessing the risk of hydrate blockage. Moreover, the hydrates deposited on the inner wall of the tube are distributed non-uniformly. With an increase in the time or decrease in the inhibitor concentration, the risk of hydrate blockage increases. Based on the proposed model, a method for the prevention of hydrate blockage, is developed based on the safe operation window during deep-water gas well testing. Further, a new hydrate blockage prevention method that involves changing the testing schedule is discussed in this paper. These provide theoretical references for hydrate blockage prevention in deep-water gas well testing. (C) 2019 Elsevier Ltd. All rights reserved.
机译:管道中的水合物形成和沉积很容易造成深水油气开发的阻塞。目前对深水气井井筒中水合物阻塞的研究较为分散。在这项研究中,考虑到温度和压力的变化以及水合物行为的特征,建立了深水气井中水合物堵塞形成的综合预测模型。使用该模型计算出的模型结果与流动回路的实验室数据和现场测量的数据非常吻合。利用该综合模型,可以准确预测深水气井井筒中水合物稳定区域的分布和水合物层的增长规律,为评估水合物堵塞风险提供依据。而且,沉积在管内壁上的水合物分布不均匀。随着时间的增加或抑制剂浓度的降低,水合物堵塞的风险增加。在此模型的基础上,基于深水气井测试的安全操作窗口,开发了一种防止水合物堵塞的方法。此外,本文还讨论了一种新的防止水合物堵塞的方法,该方法涉及更改测试时间表。这些为在深水气井测试中防止水合物堵塞提供了理论参考。 (C)2019 Elsevier Ltd.保留所有权利。

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