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Technical Session: Fluids Technology II

机译:技术会议:流体技术II

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Centrifuges and shakers are the first defence when managing a drilling fluid against wellbore cuttings and solids contamination. The buildup of drill solids in a fluid can have a detrimental effect on its performance and properties. Much of the solids control equipment in the field was designed with conventional API grade weighted fluids in mind, but the increasing use of drilling fluids in the field weighted with micron-sized particles has presented a challenge in the use of existing solids control technologies to achieve effective solids removal. With a decanting centrifuge, the particle size and density of API grade barite is such that the centrifugal force tends to remove much of it from the fluid together with the undesired solids. Similarly, the wire mesh size for shaker screens is selected to be effective in removing the cuttings, but consequently the coarser fraction of the weight material is removed. A significant reduction in weight material particle size has the potential to demonstrate a different behaviour. This paper will present data obtained from both the field and from specifically designed yard tests conducted on mieronized weighted drilling fluids.
机译:离心机和振动筛是管理钻井液以防止井眼钻屑和固体污染的第一道防线。流体中钻探固体的堆积可能对其性能和性能产生不利影响。考虑到该领域的大多数固体控制设备在设计时都考虑了传统的API级加权液体,但是在该领域中越来越多地使用微米级颗粒加权的钻井液,在使用现有的固体控制技术来实现这一目标方面提出了挑战有效去除固体。使用倾析离心机时,API级重晶石的粒径和密度应使离心力趋于将其与不希望的固体一起从流体中去除。类似地,选择振动筛的丝网尺寸以有效地去除碎屑,但是因此去除了较重部分的配重材料。重量材料颗粒尺寸的显着降低有可能显示出不同的行为。本文将介绍从现场以及专门针对细化的加权钻井液进行的院子测试获得的数据。

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    《Drilling Contractor 》 |2008年第1期| 共1页
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  • 正文语种 eng
  • 中图分类 EP;
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