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Abstract

Summary

This study demonstrates the successful integration of real-time geosteering and dipole sonic logging to enhance hydraulic fracturing performance in a thin, 3-meter-thick reservoir in onshore Thailand. By combining precise wellbore placement with advanced geomechanical analysis, a horizontal well with multistage fracturing was optimized to maximize reservoir contact and production efficiency. The approach not only improved fracture network connectivity but also reduced development costs. The methodology offers a practical solution for similar thin, low-porosity reservoirs, highlighting its potential for broader field application.

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/content/papers/10.3997/2214-4609.2025640038
2025-09-21
2026-02-15
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References

  1. J.Seydoux, J.Tabanou, L.Ortenzi, J.M.Denichou, Y. DeLaet, and D.Omeragic, M.Iversen and M.Fejerskov, NorskHydro [2003]. A Deep-Resistivity Logging-While-Drilling Device for Proactive Geosteering. Offshore Technology Conference
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