Comparative analysis of the geopolymer and Portland cement application as plugging material under conditions of incomplete displacement of drilling mud from the annulus Helqevi fezadan qazma mehlulunun natamam sixişdirilmasi zamani geopolimer ve portlandsementin tamponaj materiali kimi tetbiqinin muqayiseli analizi СРАВНИТЕЛЬНЫЙ АНАЛИЗ ПРИМЕНЕНИЯ ГЕОПОЛИМЕРА И ПОРТЛАНДЦЕМЕНТА В КАЧЕСТВЕ ТАМПОНАЖНОГО МАТЕРИАЛА В УСЛОВИЯХ НЕ ПОЛНОГО ВЫТЕСНЕНИЯ БУРОВОГО РАСТВОРА ИЗ КОЛЬЦЕВОГО ПРОСТРАНСТВА


Veliyev E., Aliyev A.

SOCAR Proceedings, no.1, pp.108-115, 2022 (ESCI) identifier

  • Publication Type: Article / Article
  • Publication Date: 2022
  • Doi Number: 10.5510/ogp20220100637
  • Journal Name: SOCAR Proceedings
  • Journal Indexes: Emerging Sources Citation Index (ESCI), Scopus, Compendex
  • Page Numbers: pp.108-115
  • Keywords: Cementing, Fly Ash, Geopolymer, Mud contamination, Portland cement, Water based mud
  • Azerbaijan State University of Economics (UNEC) Affiliated: No

Abstract

Portland cement is traditionally used in cementing of oil and gas wells. However, Portland cement has a number of shortcomings. The most important of these are the formation of microannuli between the cement plug and the rock or casing, as well as the formation of cracks and permeable channels in the cement matrix. Recent research shows that geopolymer can be a perspective alternate to portlandcement by overcoming beforementioned issues. The article comparatively analyzes the changes in the parameters of plugging materials containing geopolymer and Portland cement while contamination with water-based drilling mud. The results show that geopolymerbased solutions are more resistant to contamination with water-based drilling mud than Portland cement-based solutions. Thus, mixing Portland cement slurry with water-based drilling mud increases its viscosity and fluid loss, and sharply reduces its compressive strength. However, when a geopolymer solution is mixed with a water-based drilling fluid, its viscosity is almost unchanged, its fluid loss is reduced, and reduction in its compressive strength is less than in Portlandcement based material.