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Correlation of ultra-low shear rate viscosity and dynamic barite sag in invert-emulsion drilling fluids

机译:反相乳液钻井液中超低剪切速率粘度与重晶石垂度的相关性

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The occurence of barite sag has been a well recognized, but poorly understood phenomenon in the drilling industry. Problems such as lost circulation, well control and stuck pipe have resulted from the occurence of barite sag. The financial impact of barite sag on drilling costs, usually resulting from rig-time lost while circulating and conditioning the mud system, is not trivial. There are reported incidences where recurring barite sag problems have resulted in the loss of drilling projects. Although originally thought to occur under static conditions, barite sag is now recognized to occur more readily under dynamic, low shear rate conditions. Industry experts have offered a variety of measuring parameters, based upon empirical data, that only partially correlate with the occurrence of barite sag. The prediction of barite sag in dynamic flow has created an engineering challenge. The effect of shear rate on dynamic barite sag, for invertemulsion muds, has been studied and quantified using new and advanced technology. A new field viscometer, capable of measuring viscosity at shear rates of 0.0017 s sup -1, and an eccentric well-bore hydraulics model were used to develop and understand this relationship. Changes in mud weight as a function of shear rate, hole angle, annular velocity and eccentricity correlate with ultra-low shear rate viscosity. Based upon experimental results, field technology has been developed to predict the potential for barite sag of invert-emulsion muds and to provid remedial measures through ultra-low shear rate viscosity modification. The efficacy of using traditional rheological measurements as indicators of barite sag potential are addressed
机译:重晶石下垂的发生在钻井行业中是公认的,但知之甚少的现象。重晶下垂的出现导致了诸如井漏,井控和管道卡死等问题。重晶石下陷对钻井成本的财务影响并非微不足道,这通常是由于在循环和调节泥浆系统时损失了钻机时间而造成的。据报道,重晶石下陷问题反复发生导致钻井项目丧失。尽管最初认为是在静态条件下发生的,但现在公认重晶石下陷在动态,低剪切速率的条件下更容易发生。业界专家根据经验数据提供了各种测量参数,这些参数仅与重晶石下陷的发生部分相关。对动态流动中重晶石垂度的预测带来了工程上的挑战。已经研究和量化了新的先进技术对剪切速率对反乳胶泥动态重晶石垂度的影响。一种新的现场粘度计,能够在0.0017 s sup -1的剪切速率下测量粘度,并使用偏心井眼液压模型来建立和理解这种关系。泥浆重量随剪切速率,孔角,环形速度和偏心率的变化与超低剪切速率粘度相关。根据实验结果,已开发了现场技术,以预测反相乳液泥的重晶石下陷的可能性,并通过超低剪切速率粘度调节提供补救措施。解决了使用传统流变学测量作为重晶石下陷潜能指标的功效

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