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Startup flow of gelled waxy crude oils in pipelines: The role of volume shrinkage

机译:凝胶化蜡质原油在管道中的启动流动:体积收缩的作用

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摘要

Predicting an accurate startup pressure for gelled waxy crude oils in pipelines is an old challenge yet to be overcome. It is known that the conventional force balance grossly overestimates the minimum axial pressure gradient required. Some researchers suggest that the occurrence of volume shrinkage due to gelation affects the gelled oil morphology and consequently the startup pressure. In this paper, the volume shrinkage of gelled crudes in rheometric and tube flows is investigated. We also study the relationship between the rheological properties and the minimum pressure gradient required for the onset of flow in the presence of volume shrinkage. Two different waxy crudes were used in the investigation, here called Petroleum #1 and Petroleum #2. A method to predict the minimum startup pressure by accounting for shrinkage as a correction to the conventional force balance is outlined.
机译:预测管道中凝胶蜡质原油的准确起动压力是尚未克服的旧挑战。众所周知,传统的力平衡严重高估了所需的最小轴向压力梯度。一些研究人员表明,由于凝胶化引起的体积收缩的发生影响了凝胶化的油形态,从而影响了起动压力。在本文中,研究了流变管流量和管流中凝胶化钻的体积收缩。我们还研究了体积收缩存在下流动开始所需的流变性质和最小压力梯度之间的关系。在调查中使用了两种不同的蜡质丘,这里称为石油#1和石油#2。概述了通过算用于收缩作为对传统力平衡的校正来预测最小启动压力的方法。

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