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RHEOLOGOCAL PROPERTIES OF BARITE SEDIMENTS IN WATER-BASED DRILLING FLUIDS

机译:水基钻井液中重晶石沉积物的重金属特征

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摘要

When a drilling fluid column remains static over a timeframe of several years, the drilling fluid separates into different sediment phases due to gravity separation. These heavy sediments, entitled "settled barite", are the cause of significant operational problems several years after drilling. An important problem caused by settled barite occurs when performing casing cut-and-pull operations during slot recovery and well abandonment: the casing is "stuck" due to the sediments in the annulus outside the casing. The consistency and rheological properties of the sediments determine how easily the casing is removed. In this paper, we report a preliminary study were we have artificially prepared gravity sediment phases for two different types of water-based drilling fluids; one KCl/polymer-based fluid and one bentonite-based fluid. By studying the rheological properties of the obtained sediment phases, we see that there are considerable differences between the sediments for these different drilling fluids.
机译:当钻井液柱在几年内保持静止时,由于重力分离,钻井液会分离成​​不同的沉积物相。这些重的沉积物被称为“沉降的重晶石”,是钻井后数年内出现严重操作问题的原因。在缝隙恢复和良好废弃期间执行套管切割和拉拔操作时,会出现由重晶石沉降引起的一个重要问题:套管被套管外部的环形空间中的沉积物“卡住”。沉积物的稠度和流变特性决定了套管的拆卸难度。在本文中,我们报告了一项初步研究,即我们已经为两种不同类型的水基钻井液人工制备了重力沉积相。一种KCl /聚合物基流体和一种膨润土基流体。通过研究获得的沉积物相的流变性质,我们发现这些不同钻井液的沉积物之间存在相当大的差异。

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