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Barite sag: measurement, modelling, and management

机译:重晶石落下:测量,建模和管理

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摘要

A joint industry project was established to study barite sag mechanisms and to develop field guidelines to manage the consequences. A simple empirical model was developed to compare sag potential for a wide range of fluid types. In the study, physical properties of the mud, wellbore conditions, and characteristics of the weighting material were shown to have a large influence on sag behaviour. The study also included direct measurements of the properties of settled weight-material beds. These results provide new insight into the mechanisms of barite sag and how best to manage problems in the field. Data from the tests clearly demonstrate that the parameters affecting sag are interrelated and seldom act in isolation. For all muds tested, the highest sag occurred at low annular velocities over angles from 60-75 degree. Drill-pipe rotation was particularly beneficial in minimising harite settlement. Rotation also assisted in re-distributing harite deposits formed on the low side of the hole. The improved understanding of the mechanisms of barite sag enabled development of practical field guidelines. Case history studies presented in the paper demonstrate how the results of the work together with better field monitoring have been successfull applied to manage the effects of barite sag in HP/HT and extended-reach drilling operations.
机译:建立了一个联合行业项目,以研究重晶石SAG机制,并制定管理后果的实地指南。开发了一种简单的经验模型,以比较各种流体类型的凹凸电位。在研究中,显示泥浆,井筒状况和加权材料的特性的物理性质对SAG行为产生了很大影响。该研究还包括直接测量沉降的重量材料床的性能。这些结果提供了新的深入了解重晶石凹陷机制以及如何最好地管理现场问题。测试中的数据清楚地表明影响凹陷的参数是相互关联的,并且很少是隔离的。对于测试的所有泥浆,在60-75度的角度下,在低环形速度下发生的最高凹凸。钻管旋转在最小化粗糙沉降中特别有益。旋转还辅助在孔的低侧重新分配形成的绞羊沉积物。改进了对能够开发实际领域指南的重晶石凹陷机制的理解。本文提出的案例历史研究表明,在HP / HT和扩展到达钻井操作中,可以获得与更好的现场监测一起与更好的现场监测的工作结果。

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