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Methodology to Evaluate Calcite Scale Inhibitors Under Turbulent Flow for Subsea Oilfield Production Applications

  • Daniel Pimentel
  • , Amy Kan
  • , Yuqing Ye
  • , Xin Wang
  • , Amit Reiss
  • , Guannan Deng
  • , Yu Yi Shen
  • , Cianna Leschied
  • , Tina Yao
  • , Mason Tomson

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

1 Scopus citations

Abstract

Calcite scale formation is a common issue in oilfield production from carbonate reservoirs. It causes losses in production and additional costs for prevention or even remediation of the deposits in the pipe walls and valves. Although the thermodynamics of the equilibrium and the use of scale inhibitors are well known, there are still questions about the kinetics of the deposition, and how it performs under different flow conditions. Following a literature review, there are a limited number of investigations regarding the assessment of calcite scale formation under high shear and turbulent flow regimes and there is good evidence for the increased risk of scale formation under turbulent flow. Actual test methods do not achieve the high shear stresses experienced in real field situations (high Reynolds number and shear stress). Based on that, testing scale inhibitor performance under turbulent conditions during qualification for field application can be game-changing to provide a more accurate dosage.

Original languageEnglish
Title of host publicationSociety of Petroleum Engineers - SPE Oilfield Scale Symposium, OSS 2024
PublisherSociety of Petroleum Engineers
ISBN (Electronic)9781959025467
DOIs
StatePublished - 1 Jan 2024
Externally publishedYes
Event2024 SPE Oilfield Scale Symposium, OSS 2024 - Aberdeen, United Kingdom
Duration: 5 Jun 20246 Jun 2024

Publication series

NameSociety of Petroleum Engineers - SPE Oilfield Scale Symposium, OSS 2024

Conference

Conference2024 SPE Oilfield Scale Symposium, OSS 2024
Country/TerritoryUnited Kingdom
CityAberdeen
Period5/06/246/06/24

ASJC Scopus subject areas

  • Energy Engineering and Power Technology

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