Volume 41 Issue 5
Nov.  2024
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JIA Yonghong, GUO You, ZHANG Wei, et al.Lost circulation materials for controlling mud losses while drilling with rss[J]. Drilling Fluid & Completion Fluid,2024, 41(5):609-616 doi: 10.12358/j.issn.1001-5620.2024.05.007
Citation: JIA Yonghong, GUO You, ZHANG Wei, et al.Lost circulation materials for controlling mud losses while drilling with rss[J]. Drilling Fluid & Completion Fluid,2024, 41(5):609-616 doi: 10.12358/j.issn.1001-5620.2024.05.007

Lost Circulation Materials for Controlling Mud Losses while Drilling with RSS

doi: 10.12358/j.issn.1001-5620.2024.05.007
  • Received Date: 2024-04-14
  • Rev Recd Date: 2024-05-25
  • Publish Date: 2024-11-07
  • In drilling operation the rotary steering system (RSS) is easy to be blocked by the lost circulation materials (LCMs), causing problems such as interruption of downhole instrument signal transmission, deviation of wellbore trajectory as well as blocking of mud circulation. Moreover, addition of conventional LCMs into a mud is easy to cause the mud viscosity to increase remarkably, which in turn results in problems such as high pressure loss along the flow line and thick mud cakes etc. It is thus required that the LCMs shall have the properties of “being able to pass through the RSS”, “high plugging capacity” and “low impact on mud viscosity”. To achieve this object, a lost circulation control fiber named Fiber-1-1 has been developed with a thermally stable plant fiber, a raw material which is shredded, screeded and hydrophobically modified to produce the final product. The performance of the Fiber-1-1 was evaluated in accordance with the relevant industrial standard, and a method of evaluating its ability to pass through the RSS during drilling was established. The evaluation results show that the performance of the Fiber-1-1 has reached the requirements of the industrial standard; it causes the apparent viscosity of a drilling fluid to increase by 10%, a lost circulation slurry containing Fiber-1-1 has filtration rate of 26 mL; after circulating for 30 min, a drilling fluid treated with the Fiber-1-1 causes pump pressure to increase by less than 5%, indicating that the Fiber-1-1 can smoothly pass through RSS. An oil-based drilling fluid and a water-based drilling fluid, each of which is treated with 3% Fiber-1-1, can plug the sand beds of 20-40 meshes under experiment conditions of 150 ℃ and 5 MPa, with accumulated mud losses of 4 mL and 8 mL, respectively. And in the final part of the paper, how the Fiber-1-1 passes through RSS and how it cures mud losses are analyzed with Zeta-potential measurement and through micromorphology observation.

     

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