EnergyEngineering

Xiaojing Ge, Adel Alotibi, Ahmed Al-Hlaichi, Yanbo Liu, T. Song, Junchen Liu, Baojun Bai, Thomas P Schuman

2024.10.8SPE Eastern Regional Meeting

DOI: 10.2118/221365-ms

tlooto Summary

Novel RPPG mitigates hydraulic fracturing issues by temporarily plugging entry points into parent wellbores during frac operations on infill wells.

Abstract

Hydraulic fracturing treatments in unconventional infill (or "child") wells can be significantly affected by depletion from existing parent-well, resulting in asymmetrical fracture growth. These issues may lead to excessive load-water production, proppant deposition, casing deformation in the parent well, and unbalanced stimulation of infill wells. To mitigate these effects, various strategies have been proposed, including the use of far-field diverters in child wells and repressurization of parent wells. Additionally, an increasingly popular strategy involves injecting near-wellbore diverters to temporarily plug entry points into the parent wellbores during frac operations on infill wells. To achieve better application, a novel low-cost, self-degradable, re-crosslinkable preformed particle gel (RPPG) has been developed and evaluated. Preliminary characterization results indicate that this RPPG exhibits sufficient thermal stability and self-degrading performance at 150°C during the required timeframe, with minimal residues. It also demonstrates good injectivity and plugging efficiency.

Citation format

GE, Xiaojing, et al. Novel re-crosslinkable preformed particle gels (RPPG) for parent- and infill-well-fracture interactions mitigation. SPE Eastern Regional Meeting, 2024.